{"id":1506,"date":"2024-07-19T14:46:44","date_gmt":"2024-07-19T12:46:44","guid":{"rendered":"https:\/\/www.bionicsurface.com\/?page_id=1506"},"modified":"2025-07-10T13:00:17","modified_gmt":"2025-07-10T11:00:17","slug":"multiphysics-german","status":"publish","type":"page","link":"https:\/\/www.bionicsurface.com\/de\/multiphysics-german\/","title":{"rendered":"Multiphysik"},"content":{"rendered":"<div id=\"cs-content\" class=\"cs-content\"><div id=\"biomedical\" class=\"x-text x-text-headline e1506-e1 m15u-0 m15u-1 m15u-2 m15u-3 m15u-4\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">MULTIPHYSIK<\/h1><\/div><\/div><\/div><div class=\"x-text x-text-headline e1506-e2 m15u-1 m15u-4 m15u-5 m15u-6 m15u-7\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Kategorie<\/h1><\/div><\/div><\/div><div class=\"x-row e1506-e3 m15u-e m15u-f m15u-g m15u-j m15u-k\"><div class=\"x-row-inner\"><div class=\"x-col e1506-e4 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e5 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#biomed\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf469;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">BIOMEDIZIN<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e6 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e7 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#energy\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf376;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">ENERGIE<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e8 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e9 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#mechanical\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf7d9;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">MASCHINENBAU<\/span><\/div><\/div><\/a><\/div><\/div><\/div><div class=\"x-row e1506-e10 m15u-e m15u-g m15u-h m15u-j m15u-l\"><div class=\"x-row-inner\"><div class=\"x-col e1506-e11 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e12 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#processes\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf643;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">PROZESSE<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e13 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e14 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#pulppaper\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xe571;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">PAPIER<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e15 m15u-n m15u-o\"><a class=\"x-anchor x-anchor-button has-graphic e1506-e16 m15u-10 m15u-11 m15u-12 m15u-13\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#transport\"><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xe22d;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">TRANSPORT<\/span><\/div><\/div><\/a><\/div><\/div><\/div><div class=\"x-text x-text-headline e1506-e17 m15u-1 m15u-6 m15u-7 m15u-8\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Simulation<\/h1><\/div><\/div><\/div><div class=\"x-row e1506-e18 m15u-e m15u-f m15u-i m15u-m\"><div class=\"x-row-inner\"><div class=\"x-col e1506-e19 m15u-n m15u-p m15u-q m15u-r m15u-s\"><a class=\"x-anchor x-anchor-button e1506-e20 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#heattransfer\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Heat Transfer<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e21 m15u-n m15u-p m15u-t m15u-u m15u-v\"><a class=\"x-anchor x-anchor-button e1506-e22 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#heatexchanger\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Heat Exchanger<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e23 m15u-n m15u-p m15u-q m15u-s m15u-w\"><a class=\"x-anchor x-anchor-button e1506-e24 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#thermodynamic\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Thermodynamic<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e25 m15u-n m15u-p m15u-u m15u-v m15u-x\"><a class=\"x-anchor x-anchor-button e1506-e26 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#pipeflow\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Pipe Flow<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e27 m15u-n m15u-p m15u-r m15u-s m15u-y\"><a class=\"x-anchor x-anchor-button e1506-e28 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#fluidflow\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Fluid Flow<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e29 m15u-n m15u-p m15u-t m15u-u m15u-v\"><a class=\"x-anchor x-anchor-button e1506-e30 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#airflow\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Air Flow<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e31 m15u-n m15u-p m15u-s m15u-w m15u-y\"><a class=\"x-anchor x-anchor-button e1506-e32 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#particle\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Particle<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e33 m15u-n m15u-p m15u-u m15u-v m15u-x\"><a class=\"x-anchor x-anchor-button e1506-e34 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#shockwave\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Shock Wave<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e1506-e35 m15u-n m15u-p m15u-v m15u-z\"><a class=\"x-anchor x-anchor-button e1506-e36 m15u-11 m15u-12 m15u-14 m15u-15\" tabindex=\"0\" href=\"\/de\/multiphysics-german\/#acoustic\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Acoustic<\/span><\/div><\/div><\/a><\/div><\/div><\/div><div id=\"biomed\" class=\"x-text x-text-headline e1506-e37 m15u-1 m15u-2 m15u-3 m15u-9 m15u-a m15u-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">BIOMEDIZIN<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1712\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1712\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_09_27_ProSumm_Exias.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Mikrofluidik-Sensor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">MICROFLUIDIK-SENSOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Identifizierung der kritischen Bereiche f\u00fcr die Bildung von Luftblasen und f\u00fcr das Zur\u00fcckbleiben von Fl\u00fcssigkeit. Validierung der Basissimulation und Pr\u00fcfung der Angemessenheit verschiedener \u00c4nderungen am Aufbau.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Kosten- und zeiteffiziente Pr\u00fcfmethode f\u00fcr den Kunden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_06_Ploetzeneder_Auftaugerat.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Auftauger\u00e4t<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">AUFTAUGER\u00c4T<\/h3><p style=\"text-align:justify;padding-top:10px\">Grundlegende 3D-Simulation zur Analyse der Str\u00f6mung und des W\u00e4rmeflusses innerhalb des Defroster f\u00fcr mehrere Beutel. Identifizierung von Bereichen mit hohem Druckverlust und Bestimmung der Quellen zur Optimierung des Systems.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierung der Str\u00f6mung f\u00fcr gleichm\u00e4\u00dfiges Abtauen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_21_Ploetzeneder_Defrost.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Auftauprozess<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">AUFTAUPROZESS<\/h3><p style=\"text-align:justify;padding-top:10px\">Station\u00e4re 3D-Simulation zur \u00dcberpr\u00fcfung der Grundabtauzeit eines Beutels und 3D-Simulation bei Ersch\u00fctterung zur Analyse der Auswirkungen der Ersch\u00fctterung. Identifizierung m\u00f6glicher Systemoptimierungen zur Reduzierung der Abtauzeit.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Schnelleres Abtauen mit optimierter Effizienz.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25_MIH_Lumicks-2-INTERNAL-INFO.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Zellfalle<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ZELLFALLE<\/h3><p style=\"text-align:justify;padding-top:10px\">Mehrphasensimulation, die das Verhalten der Zellfalle imitiert und den Testbedingungen entspricht, wobei die vom Kunden \u00fcbermittelten Videos als Referenz dienen. Optimierung der Geometrie anhand der Simulation.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Leistungssteigerung der Zellfalle.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_27_NeGeMi_Dem2.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Mikrofluidik-Sensor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">MIKROFLUIDIK-SENSOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Interne Tests und Simulationen mit einem Mikrofluidik-Chip zur Verbesserung des Designs vor der Herstellung der Urform. Optimierung der Fl\u00fcssigkeitsstr\u00f6mung zur Reduzierung des Auftretens von Luftblasen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Begrenzter Testaufwand f\u00fcr neues Chipdesign.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_01_31_Morphomed_BioMicroMill.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Micro Mill<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">MICRO MILL<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation einer Micro Mill, einer Vorrichtung zum hochaufl\u00f6senden Mahlen f\u00fcr die chemische Analyse. Untersuchung der Geschwindigkeitsverteilung, der Dehnungsrate und der molekularen Viskosit\u00e4t w\u00e4hrend des Mahlvorgangs.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbessertes Know-how und Inhomogenit\u00e4tserkennung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2021_11_17_Takeda_Shaker_WP2_final_RE.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Orbital Shaker<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ORBITAL SHAKER<\/h3><p style=\"text-align:justify;padding-top:10px\">3D-CFD-Simulation zur Analyse des Mischverhaltens einer Fl\u00fcssigkeit w\u00e4hrend des Sch\u00fcttelvorgangs in einem Beutel. Aufbereitung und Bereitstellung der Simulationsdateien zur Nutzung durch den Kunden, damit dieser die Analyse nachvollziehen kann.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Kontinuierliche Nutzung der Simulation f\u00fcr den Kunden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_blood-pump.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Mechanische Kreislaufunterst\u00fctzung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">MECHANISCHE KREISLAUF-UNTERST\u00dcTZUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">3D-CFD-Simulationen einer mechanischen Kreislaufunterst\u00fctzung f\u00fcr das Herz. Hydrodynamische Optimierung von funktionalisierten Oberfl\u00e4chentexturen. Berechnung f\u00fcr laminare und turbulente Str\u00f6mung und Integration des F\u00e5hr\u00e6us-Lindqvist-Effekts.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Risikofreie Pr\u00fcfung von Medizinprodukten.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_particle-simulation.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Mikrofluidische Partikel-Simulation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">MIKROFLUIDISCHE PARTIKEL-SIMULATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation der Partikelgeschwindigkeit in einem medizinischen Sensor, einschlie\u00dflich der Berechnung von eingeschlossenen Partikeln. In den fluktuierenden Trajektorien der Partikel ist eine Brownsche Bewegung erkennbar.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Analyse des Partikelverhaltens zur Optimierung des Sensors.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_passive-flow.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Passiver Mikrofluidischer Fluss<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">PASSIVER MIKROFLUIDISCHER FLUSS<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation des passiven Blutflusses in ein medizinisches Testger\u00e4t. Bewertung der Probenaufnahme durch kapillargesteuerten Transport und Bewertung des Einflusses der Sensorfl\u00e4che auf den mikrofluidischen Fluss.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Analyse der medizinischen Funktionalit\u00e4t des Testger\u00e4ts.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/12\/square_2023_05_17_MIH_BioAnalayt-png.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Mikrofluidischer Blutfluss<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">MIKROFLUIDISCHER BLUTFLUSS<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation eines Ger\u00e4ts, das Fl\u00fcssigkeiten f\u00fcr die medizinische Diagnose aufnimmt. Untersuchung der kapillargesteuerten passiven Str\u00f6mung und Validierung des Designs. Erkennung m\u00f6glicher Blasenbildung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Blutaufnahme durch Anwendung der Ergebnisse aus mikrofluidischer CFD-Simulation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"energy\" class=\"x-text x-text-headline e1506-e39 m15u-1 m15u-2 m15u-3 m15u-9 m15u-a m15u-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">ENERGIE<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1704\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1704\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/10\/square_2025_10_31_Open_Channel_Flow.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Str\u00f6mungskanal<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">STR\u00d6MUNGSKANAL<\/h3><p style=\"text-align:justify;padding-top:10px\">Analyse eines offenen Str\u00f6mungskanals zur Quantifizierung der Energieverlust- und Str\u00f6mungseigenschaften unter dem Einfluss von Wandrauheit und Str\u00f6mungsst\u00f6rungen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Erm\u00f6glicht die Optimierung des Designs durch Verst\u00e4ndnis der Auswirkungen von Rauheit und Str\u00f6mungsst\u00f6rungen. <\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_Nikon_fan_blade_CA_ProSumm.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Turbofan<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">TURBOFAN<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Ventilatorstufe eines Strahltriebwerks f\u00fcr 3 verschiedene Betriebspunkte und die Auswirkungen von Riblet auf Rotor und Stator. Verbesserung des Gesamtdruckanstiegs und des Wirkungsgrads durch den Einsatz von Riblet.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>M\u00f6gliche Effizienzsteigerung f\u00fcr die Triebwerksschaufel.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_TLT_POC_Windkanal-Riblets_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Windkanal-Ventilator<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WINDKANAL-VENTILATOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung der Auswirkungen des Riblets auf Rotor und Stator eines 0,5 m gro\u00dfen Modells eines Windkanalventilators. Simulationen f\u00fcr drei verschiedene Betriebspunkte, Entwurf von Riblets und Leistungstests.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Konzeptnachweis f\u00fcr die Effizienzsteigerung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_09_21_BASF_MingYang.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Windturbine<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WINDTURBINE<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Auswirkungen des Riblet auf eine Windkraftanlage. Basissimulation zur Ermittlung der idealen Riblet-Gr\u00f6\u00dfe und Berechnung des Nutzens der Anwendung auf der Saug- und Druckseite.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Sch\u00e4tzung der Effizienzsteigerung mit Riblets.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_IDOMENEO__ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Turbinenzwischengeh\u00e4use<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">TURBINEN-ZWISCHENGEH\u00c4USE<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Einflusses hei\u00dfer Schlieren auf das Turbinenzwischengeh\u00e4use mit Hilfe von CFD und Large-Eddy-Simulationen. Vergleich von unbeheizten und beheizten Szenarien zum Verst\u00e4ndnis des Str\u00f6mungs- und Mischungsverhaltens in der Turbine.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Besseres Verst\u00e4ndnis des Maschinenverschlei\u00dfes.&lt;...<\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_turbine.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Modell-Windturbine<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">MODELL-WINDTURBINE<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Leistungssteigerung bei einer Modell-Windkraftanlage mit Riblets im Windkanal. Analyse der optimalen Gr\u00f6\u00dfe der Riblets und ihrer Auswirkungen auf die Leistung der Windkraftanlage.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Leistung und Performance von Windkraftanlagen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/07\/square_2024_06_07_BILASURF_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Laser-Funktionalisierung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">LASER-FUNKTIONALISIERUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Intereurop\u00e4isches Forschungsprojekt f\u00fcr lasergravierte Riblets auf industriellen Oberfl\u00e4chen wie Turbinen und Ventilatoren. Bewertung der Effizienzsteigerung bei herstellbaren Mustern mit CDF-Simulation.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierung von Mustern vor der Herstellung von Prototypen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25__ProSumm_Froeling_LM1000_Basis-INTERNAL-INFO.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">1MW W\u00e4rmetauscher<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">1MW W\u00c4RMETAUSCHER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Wasser- und Gasstr\u00f6mung in einem W\u00e4rmetauscher durch CFD-Simulation und Vergleich mit realen Daten. Bestimmung von Geschwindigkeiten und W\u00e4rmestr\u00f6men.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierter W\u00e4rmetauscher mittels CFD-Str\u00f6mungsanalyse.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_07_Froeling_Warmetauscher_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">500KW W\u00e4rmetauscher<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">500KW W\u00c4RMETAUSCHER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung verschiedener W\u00e4rmetauscherdesigns mit dem Ziel, das bestehende Modell zu ersetzen. Analyse der Rolle von Strahlung und Wasserzirkulation und Empfehlungen zur Optimierung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verstehen wichtiger Systemparameter.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_10__ProSumm_Resistant_DEM02.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Radial-Verdichter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">RADIAL-VERDICHTER<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Auswirkungen der Riblet-Folie auf den Diffusor des Verdichters und der Riblet-Beschichtung auf der geteilten Spirale. Erh\u00f6hung des polytropen Wirkungsgrads durch Aufbringen von Riblets auf die Spiralgeh\u00e4use.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Performance increase of the compressor.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_12_12__ProSumm_Nikon_Schiebel.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">UAV<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">UAV<\/h3><p style=\"text-align:justify;padding-top:10px\">Pr\u00fcfung gelaserter Riblets auf der Druck- und Saugseite eines UAV-Rotorblatts. CFD-Simulation zur Bestimmung der optimalen Ribletgr\u00f6\u00dfe und -wirkung. Validierung der von den Forschungspartnern erzielten Ergebnisse.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Leistungsreduzierung und Auftriebssteigerung f\u00fcr UAV.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-12 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_31_Froeling_Pelletkessel_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pelletkessel<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">PELLETKESSEL<\/h3><p style=\"text-align:justify;padding-top:10px\">Berechnung der Flugbahnen der Staubpartikel zum Elektrofilter in einem Pelletkessel. Optimierungsvorschl\u00e4ge zur Erh\u00f6hung des Staubpartikelabscheidegrades.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Staubabscheidung f\u00fcr sauberere Pelletkessel.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-13 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_02_08_Nikon_ND_compressor_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Axial-Kompressor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">AXIAL-KOMPRESSOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Auswirkungen von ideal gro\u00dfen Riblets auf den Rotor und den Rotortr\u00e4ger von transsonischen Axialverdichtern durch CFD-Simulation. Vergleich mit der Aerodynamik eines Verdichters mit glatter Oberfl\u00e4che.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Riblets verbessern den adiabatischen Wirkungsgrad.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-14 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_07_04_SAY_Boat-Jet-Propulsion_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Jet-Antrieb<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">JET-ANTRIEB<\/h3><p style=\"text-align:justify;padding-top:10px\">Durchf\u00fchrbarkeitsstudie f\u00fcr ein Bootsstrahlantriebssystem mit CFD-Str\u00f6mungsanalyse zur Simulation des Schubs f\u00fcr verschiedene Geometrien. Bestimmung der Eignung des Antriebssystems f\u00fcr ein Schnellboot.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Informierte Entscheidung f\u00fcr optimale Bootsantriebssysteme.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-15 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2021_12_15_Nikon_pumpT.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Radial-Pumpe<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">RADIAL-PUMPE<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des hydraulischen Verhaltens einer Radialpumpe. CFD-Simulation der Wassergeschwindigkeitsverteilung und Berechnung der Riblet-Anwendungswirkung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Besseres Verst\u00e4ndnis f\u00fcr das Verhalten der Pumpe.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-16 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2021_12_15_NIKON_Gas_Turbine_Ossum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Gasturbine<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">GASTURBINE<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation von Riblets am Laufrad einer Gasturbine. Berechnung des isentropen Wirkungsgradgewinns und der Leistungsreduzierung. Identifizierung weiterer geeigneter Bereiche f\u00fcr den Einsatz von Riblets in der Turbine.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effizientere Gasturbine.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-17 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2020_08_10_NIKON_N_Impeller_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Radial-Verdichter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">RADIAL-VERDICHTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Wirkungsanalyse von lasergenerierten Riblets auf das Laufrad eines Staubsaugers. Berechnung des Effizienzgewinns und der Erh\u00f6hung des Massenstroms.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Bessere Verkaufslage durch Leistungssteigerung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-18 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_04_20_116_Podilabs.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Hydrojet<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HYDROJET<\/h3><p style=\"text-align:justify;padding-top:10px\">3D-CFD-Simulation eines Hydrojet-Antriebssystems, Analyse der wichtigsten str\u00f6mungstechnischen Variablen. Empfehlung, die hydraulische Konstruktion aufgrund der durch Kavitation verursachten geringen Effizienz zu \u00fcberdenken.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Ermittlung der Ursache f\u00fcr die geringe Effizienz.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-19 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_01_28_OSSUM_Bauer_Optimierung_Brunnenpumpe.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Brunnenpumpe<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">BRUNNENPUMPE<\/h3><p style=\"text-align:justify;padding-top:10px\">Optimierung einer Brunnenpumpe zur Erh\u00f6hung der F\u00f6rderh\u00f6he. CFD-Simulation des Geschwindigkeitsverlaufs f\u00fcr verbesserte Pumpengeometrien und Berechnung der Wirkungsgrad\u00e4nderung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Pumpeneffizienz und h\u00f6here Kapazit\u00e4t.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-20 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2020_08_10_YASA_eMotor-Unit_OSSUM.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Elektromotor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ELEKTROMOTOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Absch\u00e4tzung des Einflusses von Riblet auf die Reduzierung der internen Verluste in einem eMotor, wenn es auf allen Oberfl\u00e4chen angewendet wird. Simulation der Geschwindigkeitsverteilung und der Wandschubspannung bei verschiedenen Geschwindigkeiten.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Energieeinsparung und Effizienzsteigerung f\u00fcr eMotor.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-21 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_akustik.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Akustische L\u00e4rmminderung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">AKUSTISCHE L\u00c4RMMINDERUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Akustische L\u00e4rmminderung und -analyse durch gezielte Str\u00f6mungs- und Gestaltungsma\u00dfnahmen. Pr\u00e4zise Simulation von turbulenten Str\u00f6mungen durch numerische Methoden (CAA) oder Anwendung von Modellen zur Schallerzeugung (FW-H).<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Understanding and minimization of noise generation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-22 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_rotor-vib.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Str\u00f6mungsfeldverzerrung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">STR\u00d6MUNGSFELD-VERZERRUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">FFT-Analyse der Wechselwirkung zwischen Rotor und Stator bei der gezielten Einbringung einer St\u00f6rung in das Str\u00f6mungsfeld. Auswertung der resultierenden Schwingungsfrequenzen, die an den Schaufeln auftreten.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Besseres Verst\u00e4ndnis des Maschinenverhaltens.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-23 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_Water-pump.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Wasserpumpe<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WASSERPUMPE<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation des hydraulischen Verhaltens einer axialen Wasserpumpe. Analyse der m\u00f6glichen Anwendung und Auswirkung von lasererzeugten Riblets auf den Wirkungsgrad der Pumpe.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Tieferer Einblick in die Pumpenleistung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"mechanical\" class=\"x-text x-text-headline e1506-e41 m15u-1 m15u-2 m15u-6 m15u-9 m15u-b m15u-c\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">ANLAGEN- UND MASCHINENBAU<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1714\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1714\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/02\/square_2015_11_15_Boehler_Kammerofen_neu-png.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Flachflammen-Brenner<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">FLACHFLAMMEN-BRENNER<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Der Flachflammenbrenner f\u00fcr diesen Stahlofen wurde simuliert, um den Brenner zu vereinfachen und ein virtuelles Modell des Stahlofens zu erstellen. Dieses virtuelle Ofenmodell kann dann verwendet werden, um die Temperaturverteilung auf den Stahlteilen w\u00e4hrend des Heizzyklus zu berechnen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Das virtuelle Modell kann die Effizienz und Genauigkeit des Erw\u00e4rmungszyklus f\u00fcr Stahlteile erh\u00f6hen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_04_24__ProSumm_Hofmann_Drehherdofen.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Industrieofen<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">INDUSTRIEOFEN<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation des aktuellen Drehherdofenaufbaus zur \u00dcberpr\u00fcfung der Funktionalit\u00e4t und zur Identifizierung problematischer Bereiche zur Verbesserung des Str\u00f6mungsverhaltens am Gebl\u00e4se und an den Heizst\u00e4ben.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Besseres Verst\u00e4ndnis und Vorschl\u00e4ge f\u00fcr Verbesserungen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_05_10_ProSumm_Kappa_AxialZyklon.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Zyklonfilter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ZYKLONFILTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation einer Standardgeometrie eines Axialzyklons zur zentrifugalen Partikelabscheidung im Hinblick auf Druckverlust und Partikelabscheidung. Str\u00f6mungsanalyse und Optimierungsvorschlag f\u00fcr die Zyklongeometrie.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Geometrie f\u00fcr die Partikelabscheidung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_05_15_ProSumm_MKN_Hochdruckreinigung.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Reinigungssystem<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">REINIGUNGSSYSTEM<\/h3><p style=\"text-align:justify;padding-top:10px\">Analyse des Str\u00f6mungsweges eines Hochdruckreinigungssystems einschlie\u00dflich Druckverlust, Kavitationsbereiche, Erosionszonen und Einfluss der Fertigungsrauheit zur Optimierung der Systemgeometrie.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Designverbesserungen f\u00fcr das Ger\u00e4t des Kunden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_08_16__ProSumm_Primetals_Tropenabscheider.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Tropfenabscheider<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">TROPFENABSCHEIDER<\/h3><p style=\"text-align:justify;padding-top:10px\">Computational Fluid Dynamics (CFD) Simulation eines geplanten Tr\u00f6pfchenabscheiders mit zus\u00e4tzlicher Partikelanalyse. Besseres Verst\u00e4ndnis des Str\u00f6mungsverhaltens und Vorschl\u00e4ge zur Behebung von Konstruktionsfehlern.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Systemtests und -korrekturen im Vorfeld der Prototypentwicklung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_05_06__ProSumm_LO_Aebi-Schmidt.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Kabinen-Ventilation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">KABINEN-VENTILATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Berechnung der Kabinenbel\u00fcftung. Analyse des Volumenstroms und der Geschwindigkeitsverteilung an den Ausstr\u00f6md\u00fcsen. Vorschlag zur Optimierung der Kan\u00e4le f\u00fcr eine bessere Str\u00f6mungsverteilung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Wettbewerbsvorteil durch Komfortanalyse.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25_Froeling_Submodell_Entstaubung.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Hochdruck-Reinigung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">HOCHDRUCK-REINIGUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Entwicklung eines Teilmodells auf der Grundlage der Ergebnisse der Basissimulation zur Verifizierung des Entstaubungsprozesses, der durch die Injektion von Luft durch ein Rohrsystem erfolgt, und Vorschl\u00e4ge zur Optimierung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Teilmodell f\u00fcr ein komplexeres System.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_12_12_JANSEN_Warmeuebertragung_ProSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">W\u00e4rme\u00fcbertragungs-Analyse<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">W\u00c4RME\u00dcBERTRAGUNGS-ANALYSE<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung, ob eine strukturierte Innenrohroberfl\u00e4che eine bessere W\u00e4rmeleistung erzielt als eine glatte Oberfl\u00e4che. CFD-Berechnung der W\u00e4rme\u00fcbertragungsleistung verschiedener Oberfl\u00e4chen mittels LES-Simulation.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Der Kunde erh\u00e4lt Klarheit \u00fcber die Anwendbarkeit von Riblets.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_11_11_Liebherr_Celsineo_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">K\u00e4ltemodul<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">K\u00c4LTEMODUL<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Str\u00f6mungsfeldes in einem K\u00fchlanh\u00e4nger unter Ber\u00fccksichtigung der W\u00e4rme\u00fcbertragung am Verdampfer mittels CFD-Simulationen. Vorschl\u00e4ge zur Reduzierung der Druckverluste und zur Erreichung einer gleichm\u00e4\u00dfigeren Str\u00f6mung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>K\u00fchlleistungssteigerung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_10_CE_Flachstrahlduese_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Flachstrahldr\u00fcse<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">FLACHSTRAHLD\u00dcSE<\/h3><p style=\"text-align:justify;padding-top:10px\">3D-CFD-Simulation mit Mehrphasenstr\u00f6mung (Wasser-Sand-Gemisch und Luft) und Erosionsmodell zur Verbesserung einer Flachstrahld\u00fcse. Optimierungsvorschl\u00e4ge zur Erh\u00f6hung der Lebensdauer durch geringere Erosion und verbesserte D\u00fcsenleistung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Erh\u00f6hung der Leistung und Lebensdauer der Maschine.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_14_ProSumm_FACC_Ventilation_system_C2.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Kabinen-Luftqualit\u00e4t<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">KABINEN-LUFTQUALIT\u00c4T<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation des Volumenstroms f\u00fcr ein Flugzeugkabinenbel\u00fcftungssystem. Berechnung der maximalen Geschwindigkeit und des Gegendrucks am Auslass und Optimierungsvorschl\u00e4ge zur Einhaltung von Industriestandards.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierung des vorgeschlagenen Systems zur Erf\u00fcllung der Anforderungen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-12 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_01_31_Liebherr_Kuehl-Gefrier-Kombination_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">K\u00fchlger\u00e4t<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">K\u00dcHLGER\u00c4T<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Analyse der Str\u00f6mungsverteilung im K\u00fchlsystem einer Tiefk\u00fchltruhe. Identifizierung problematischer Zonen, um die Eisbildung zu verhindern und den Energieverbrauch zu senken.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Geringerer Energieverbrauch durch Vermeidung von Eisbildung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-13 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2019_11_11_AKE_Verdampferopt_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">K\u00fchlschrank-Verdampfer<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">K\u00dcHLSCHRANK-VERDAMPFER<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation des mittleren W\u00e4rmestroms, der Temperatur und der Geschwindigkeit in einer Verdampfungsanlage. Optimierung der Temperaturverteilung, der Verdampfungsleistung und der Reduzierung des Druckverlustes.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Energieeinsparung durch verbesserte Leistung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-14 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2021_10_27_Hofmann_Waermetechnik_Lufwechseluntersuchung_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Heizplatte<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HEIZPLATTE<\/h3><p style=\"text-align:justify;padding-top:10px\">Berechnung der f\u00fcr die Durchf\u00fchrung des Luftaustauschs in einem Ofen erforderlichen Zeit und Bestimmung der Gleichm\u00e4\u00dfigkeit der Ofensp\u00fclung. Vergleich der Druckverlust\u00e4nderungen bei unterschiedlichen Geometrien.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Mit Hilfe von Simulationen konnte die beste Geometrie ermittelt werden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-15 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_04_01_108_Ceratizit_Nassstrahlanlage.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Nass-Strahlanlage<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">NASS-STRAHLANLAGE<\/h3><p style=\"text-align:justify;padding-top:10px\">Optimierung der Str\u00f6mung in der Strahld\u00fcse einer Nass-Strahlanlage und Bewertung der Strahlqualit\u00e4t. Auswahl der Variante, die die h\u00f6chste Austrittsgeschwindigkeit f\u00fcr die transportierten Sandpartikel erreicht.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Effizienz durch optimales D\u00fcsendesign.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-16 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_05_13_Boehler_PhaseII_OSSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Vakuumofen<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">VAKUUMOFEN<\/h3><p style=\"text-align:justify;padding-top:10px\">Bestimmung der W\u00e4rme\u00fcbergangskoeffizienten von gekerbten Proben in einem Vakuumofen mit CFD-Simulation. Validierung der Str\u00f6mungsbedingungen durch Temperaturmessungen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierte Ofenleistung mit simulierten Daten.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-17 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_05_22_BORA_Professional_2.0_Eintrombereich.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Kochfeld<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">KOCHFELD<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation des Str\u00f6mungsverhaltens der Luft um ein Fallstroml\u00fcftungssystem in der K\u00fcche. Auswertung der Flammenverzerrung und Visualisierung der Saugglocke.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Neue Erkenntnisse \u00fcber die Auswirkungen des Ger\u00e4ts auf die Umgebung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-18 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_05_23__Primetals__Raw_gas_duct.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Rohgasleitung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ROHGASLEITUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation der Wege von Mischpartikeln mit unterschiedlichen Durchmessern in einem Rohgaskanal. Vorschl\u00e4ge zur Homogenisierung der Partikelverteilung in den Filterboxen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierung des Filterungsmechanismus.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-19 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_05_23_OSSUM_Ventrex_HH_Resonator.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Resonator<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RESONATOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Einflusses eines Helmholtz-Resonators auf das akustische Signal. Simulation der ver\u00e4nderten Anstr\u00f6mung und deren Auswirkung auf das Schwingungsverhalten und Vergleich mit anderen Varianten.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Zeiteffizienter Vergleich von verschiedenen Setups.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-20 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_03_25_LTH_FilteringDevice_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Aerosol-Extraktion<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">AEROSOL-EXTRAKTION<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation zum Verst\u00e4ndnis und zur Verbesserung des Absaugstroms von Aerosolen. Entwurf einer neuen Absaughaube und Neuanordnung der Blasd\u00fcsen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Betriebsart f\u00fcr die Aerosolabsaugung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-21 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_05_27_AKE_Kuehlwanne_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">K\u00fchlwanne<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">K\u00dcHLWANNE<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Optimierung einer K\u00fchlwanne zur Steigerung der Energieeffizienz. Identifizierung von Bereichen mit hohen Verdunstungsverlusten und Vorschlag f\u00fcr Verbesserungsma\u00dfnahmen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effizienzsteigerung und Energieeinsparung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-22 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2020_01_27_Primetlas_Gas_Turbinen_Zustroemung_Modified_GEO_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Gasturbinenzulauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">GASTURBINENZULAUF<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Str\u00f6mung durch Rohre und Zyklonabscheider bis zum Turbineneintritt. Optimierung der Leitschaufelgeometrie zur Verringerung von Str\u00f6mungsinstabilit\u00e4ten an der Turbineneinlaufebene.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Str\u00f6mungsanalyse zur Auswahl der besten Schaufelmodifikation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-23 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_garraum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Garraum<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">GARRAUM<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Analyse und Optimierung der Temperatur- und Geschwindigkeitsverteilung in eines Garraums. Vorschl\u00e4ge zur Verbesserung der Backfl\u00e4che und der Rotoren, um eine gleichm\u00e4\u00dfige Temperaturverteilung zu erreichen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte und gleichbleibende Qualit\u00e4t der Backwaren.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-24 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_gas-turbine-inflow.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Gasturbinenzulauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">GASTURBINENZULAUF<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Simulation der Str\u00f6mung durch die Rohre und den Zyklonabscheider bis zum Eintritt in die Gasturbine. \u00c4nderung der Geometrie zur Erh\u00f6hung der Str\u00f6mungsstabilit\u00e4t in der Einlaufebene.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Str\u00f6mungsanalyse f\u00fcr optimales Str\u00f6mungsverhalten.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-25 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_kuhlmittelstrahl.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">K\u00fchlung Fr\u00e4swerkzeug<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">K\u00dcHLUNG FR\u00c4SWERKZEUG<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Geschwindigkeits- und Druckverteilung des K\u00fchlmittelstroms einer Fr\u00e4smaschine. Optimierungsvorschlag f\u00fcr den Strahl und die K\u00fchlmittelkan\u00e4le sowie die Position der Wendeschneidplatte.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effizienzsteigerung durch verbesserte K\u00fchlung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"processes\" class=\"x-text x-text-headline e1506-e43 m15u-1 m15u-2 m15u-9 m15u-a m15u-b m15u-c\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">PROZESSTECHNIK<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1708\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1708\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/04\/square_2025_04_25_Nozzle_Flow.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">D\u00fcsenstr\u00f6mung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">D\u00dcSENSTR\u00d6MUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Analyse des Str\u00f6mungsweges durch die D\u00fcse, einschlie\u00dflich Druckverlust, Kavitation und Erosionszonen, sowie Strahlanalyse mit Schwerpunkt auf Spr\u00fchmuster und Aufbruch.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Im virtuellen D\u00fcsenpr\u00fcfstand kann jede beliebige Geometrie getestet und f\u00fcr verschiedene Anwendungen optimiert werden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/01\/square_2024_11_22_Shelf_Life-png.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Haltbarkeits-Simulation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HALTBARKEITS-SIMULATION<\/h3><p style=\"text-align:justify;padding-top:10px\">3D-CFD-Simulation einer lebensmittelhaltigen Verpackung in einer genau definierten, kontrollierten Umgebung. \u00dcberwachung der Ver\u00e4nderungen des Wasserstands im Laufe der Zeit.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Experimente zur Haltbarkeit von Monaten auf Tage reduziert.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_21_Ploetzeneder_Defrost.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Auftauprozess<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">AUFTAUPROZESS<\/h3><p style=\"text-align:justify;padding-top:10px\">Station\u00e4re 3D-Simulation zur \u00dcberpr\u00fcfung der Grundabtauzeit eines Beutels und 3D-Simulation bei Ersch\u00fctterung zur Analyse der Auswirkungen der Ersch\u00fctterung. Identifizierung m\u00f6glicher Systemoptimierungen zur Reduzierung der Abtauzeit.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Schnelleres Abtauen mit optimierter Effizienz.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_04_11_Andritz_Headbox_fourdrinier_turbBlock_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Langsieb-Stoffauflauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">LANGSIEB-STOFFAUFLAUF<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation der gesamten Stoffauflauffl\u00e4che mit einem Mischungsmodell aus Zellstoff und Wasser. Vergleich verschiedener Varianten des Turbulenzblocks mit dem Wirbelstromverhalten im Basisszenario.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Wirbelstromkontrolle f\u00fcr bessere Zellstoffqualit\u00e4t.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25__ProSumm_KVT_Verteilerrohr.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Reaktor-Gasmischung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">REAKTOR-GASMISCHUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Vergleich von Basis- und Varianten-3D-Simulation zur Untersuchung der thermischen Vermischung von zwei Gasstr\u00f6men in SO3-Reaktoren. Wegen der Korrosionsgefahr war keine Gaskondensation an den Systemkomponenten erw\u00fcnscht.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimiertes Design durch pr\u00e4zise 3D-W\u00e4rmesimulationen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_09_05_Delfort_Buette_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Zellstoffb\u00fctte<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">ZELLSTOFFB\u00dcTTE<\/h3><p style=\"text-align:justify;padding-top:10px\">Entwurf und Optimierung einer Zellstoffb\u00fctte. Simulationen f\u00fcr R\u00fchr- und Extraktionsbedingungen und Ermittlung von Zielparametern. Konstruktionsempfehlungen zur Erzielung eines gleichm\u00e4\u00dfigen Mischverhaltens.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Gleichm\u00e4\u00dfiges Mischen mit optimiertem Zellstoffb\u00fcttendesign.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_30_Andritz_Pulper_Baseline_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pulper<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">PULPER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung des Mischverhaltens in einem Pulper mit verschiedenen Drehzahlen zur Ermittlung der optimalen Geschwindigkeit f\u00fcr das Aufl\u00f6sen des Zellstoffs. Vorschlag f\u00fcr eine Rotationsgeschwindigkeit zur effizienten Verarbeitung des Zellstoffs. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Die Maschine kann in optimalen Einstellungen laufen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_25_ProSumm_uCT.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">\u00b5-CT + CFD Simulation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">\u00b5-CT + CFD SIMULATION<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation zur Ermittlung von Porosit\u00e4t, Gurley-Zeit und Tortuosit\u00e4t verschiedener Papierproben und Vergleich mit Messungen und analytischen Berechnungen. Die Geometrien wurden aus den \u00b5-CT-Bildern gewonnen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Ergebnisse wurden genutzt um neue Bildverarbeitungstechniken zu pr\u00fcfen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2017_06_26_HTM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Partikelzerst\u00e4ubung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">PARTIKELZERST\u00c4UBUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Str\u00f6mungsoptimierung eines Partikelzerst\u00e4ubungssystems zur Verbesserung der Strahlqualit\u00e4t. Simulation von Grund- und Variantengeometrie zur Berechnung der ver\u00e4nderten Str\u00f6mung im Bereich der Strahld\u00fcse.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Designvergleich, um die beste Option f\u00fcr den Prototyp zu finden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_11_11_2_phasige_Rohrstroemung__OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Zweiphasen-Rohrstr\u00f6mung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ZWEIPHASEN-ROHRSTR\u00d6MUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung der Auswirkung einer Erh\u00f6hung der Str\u00f6mungsgeschwindigkeit auf die Trennung der Zellstoffsuspension. Analyse der Geschwindigkeitsabh\u00e4ngigkeit mit einem Zweiphasen-Sedimentationsgemisch-Modell.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verkn\u00fcpfung von Fl\u00fcssigkeitsgeschwindigkeit und Zellstoffabscheidung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2021_05_03_Linsinger_H2-Konzentration_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Explosionsgrenze H2<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">EXPLOSIONSGRENZE H2<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Wasserstoffkonzentration in einem K\u00fchlaggregat und Analyse von Bereichen mit m\u00f6glichem Austritt von z\u00fcndf\u00e4higem Wasserstoff-Luft-Gemisch. CFD-Simulation von Geschwindigkeit und Molenbruch.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Bewertung der Explosionsgrenzen in K\u00fchlanlagen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-12 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_bioreactor.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Bioreaktor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">BIOREAKTOR<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation und Analyse verschiedener Ph\u00e4nomene in Bioreaktoren. Entwicklung eines neuen Konzepts und einer neuen Software f\u00fcr die Verteilung der Partikelverweilzeit, mit Anweisungen f\u00fcr den Kunden zur Verwendung des neuen Tools.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Neues Analysewerkzeug f\u00fcr den Maschine.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-13 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_coating-simulation.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Beschichtungssimulation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">BESCHICHTUNGSSIMULATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Entwicklung eines Simulationsaufbaus zur Vorhersage der Schichtdicke beim Eloxieren. Verwendung des Eulerschen Modells f\u00fcr granulare Str\u00f6mung zur Erh\u00f6hung der Vorhersagegenauigkeit.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>H\u00f6here Pr\u00e4zision bei der Produktverarbeitung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-14 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_fermenter.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Fermenter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">FERMENTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Mischverhaltens in einem Fermenter und der Auswirkungen von Up- und Downscaling. Berechnungen mit einem Mehrphasenmodell und unter Verwendung verschiedener Geometrien f\u00fcr den Mischstab.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserung des Fermentationsprozesses.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-15 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_gihtgaswasche.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Gichtgasreiniger<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">GICHTGASREINIGER<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation eines Gasreinigers zur Bewertung des Str\u00f6mungsfeldes. Entwicklung von neuen Schaufeln zur Optimierung der Druckverteilung. Signifikante Effizienzsteigerung und Reduzierung der erforderlichen Leistung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Senkung des Energieverbrauchs und Leistungsoptimierung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-16 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_nox.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">NOx Verbrennungskinetik<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">NOx VERBRENNUNGSKINETIK<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Verbrennungsprozesses im K\u00fchlkamin einer Konverteranlage mit der Vorhersage von NOx-Gasen. Berechnung des W\u00e4rmestroms, der Temperaturverteilung und des Molanteils.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Simulationsergebnisse zum Vergleich mit Messungen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"pulppaper\" class=\"x-text x-text-headline e1506-e45 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">PAPIER & ZELLSTOFF<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1710\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1710\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_04_24__ProSumm_AF_Slanted_Straight.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Rotor Drucksortierer<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">ROTOR DRUCKSORTIERER<\/h3><p style=\"text-align:justify;padding-top:10px\">Vergleich von zwei verschiedenen Rotor-Drucksortierer-Geometrien mit CFD-Simulation. Pr\u00fcfung, ob die Alternative eine Verbesserung in Bezug auf Verluste und Siebqualit\u00e4t bewirkt.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Potenzielle Verlustreduzierungen, die durch Simulationen hervorgehoben werden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_04_27_AD_Bracell_suction_pipe_redesign_Prosumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Entstaubungsrohr<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">ENTSTAUBUNGSROHR<\/h3><p style=\"text-align:justify;padding-top:10px\">Analyse eines neuen Entwurfs f\u00fcr ein Staubabsaugrohr. Simulation verschiedener Formen und \u00d6ffnungen f\u00fcr das Rohr zur Optimierung der Geometrie in einem vereinfachten Bereich.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Bessere Gleichm\u00e4\u00dfigkeit der Staubabsaugung entlang des Rohrs.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_IBS_Trocknungszylinder_Basis_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Yankee Zylinder<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">YANKEE ZYLINDER<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation des Yankee Zylinders mit der Wasserstr\u00f6mung im Inneren, den Feststoffen des Zylinders und der Luft an der Au\u00dfenseite zur Untersuchung der Temperaturverteilung sowie Vorschl\u00e4ge f\u00fcr eine optimierte Auslegung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Eine gleichm\u00e4\u00dfige Temperaturverteilung verbessert die Trocknung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_07_18_AD_DryEnd_Thermal_Deformation.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Verformung in Papiermaschine<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">VERFORMUNG IN PAPIERMASCHINE<\/h3><p style=\"text-align:justify;padding-top:10px\">Verst\u00e4ndnis der thermischen Verformung in Papiermaschinen, um die Ursache f\u00fcr die unterschiedliche Schnittqualit\u00e4t zu finden. CFD-Simulation der Temperaturverteilung zur Ermittlung kritischer Komponenten mit hoher Verformung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effiziente Lokalisierung von problematischen Teilen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_07_24_AD_DryEnd_Dust_Removal_System.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Spitzenschneider<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">SPITZENSCHNEIDER<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der gesamten Geometrie in einer Zellstoff- und Papiermaschine, um die globale Str\u00f6mungssituation zu ermitteln. Absch\u00e4tzung des Einflusses der Str\u00f6mung auf Staubabsaugung, Dampfabsaugung und Abluft.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verst\u00e4ndnis der Str\u00f6mungsverh\u00e4ltnisse.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_04_11_Andritz_Headbox_fourdrinier_turbBlock_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Langsieb-Stoffauflauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">LANGSIEB-STOFFAUFLAUF<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation der gesamten Stoffauflauffl\u00e4che mit einem Mischungsmodell aus Zellstoff und Wasser. Vergleich verschiedener Varianten des Turbulenzblocks mit dem Wirbelstromverhalten im Basisszenario.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Wirbelstromkontrolle f\u00fcr bessere Zellstoffqualit\u00e4t.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square__pulp-dust-injection.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pulper-Staubeinblasung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">PULPER-STAUBEINBLASUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Optimierung der Volumenstromverteilung in Staubeinblasrohren eines Pulpers. CFD-Simulation zur Ermittlung der optimalen Rohrgeometrie.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Leistungssteigerung durch effizienten Staubfluss.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_09_05_Delfort_Buette_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pulp Beh\u00e4lter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">PULP BEH\u00c4LTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Entwurf und Optimierung eines neuen Zellstoffbeh\u00e4lters. Simulationen f\u00fcr R\u00fchr- und Extraktionsbedingungen und Ermittlung von Zielparametern. Konstruktionsempfehlungen zur Erzielung eines gleichm\u00e4\u00dfigen Mischverhaltens.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Gleichm\u00e4\u00dfiges Mischen mit optimiertem Zellstoffbeh\u00e4lterdesign.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_30_Andritz_Air_reject_conveyer_ProSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Luftabscheideband<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:27px\">LUFTABSCHEIDE-BAND<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung der Volumenstromverteilung \u00fcber die Maschinenbreite und die einzelnen Sch\u00e4chte. CFD-Simulation verschiedener Geometrien, Bewertung ihrer Auswirkungen sowie Druckverlustoptimierung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Besseres Verst\u00e4ndnis der Maschinengeometrie.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_30_Andritz_Fourdrinier_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Langsieb-Stoffauflauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">LANGSIEB-STOFFAUFLAUF<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung von Turbulenzproblemen im Sieb mit Simulation der gesamten Stoffauflauffl\u00e4che mit einem Mischungsmodell aus Zellstoff und Wasser. Ermittlung der Turbulenzursache und Korrelation mit dem Mischungsverh\u00e4ltnis.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Pr\u00e4zise Fehlererkennung und -beschreibung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_30_Andritz_Pulper_Baseline_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pulper<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">PULPER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung des Mischverhaltens in einem Pulper mit verschiedenen Drehzahlen zur Ermittlung der optimalen Geschwindigkeit f\u00fcr das Aufl\u00f6sen des Zellstoffs. Vorschlag f\u00fcr eine Rotationsgeschwindigkeit zur effizienten Verarbeitung des Zellstoffs. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Die Maschine kann in optimalen Einstellungen laufen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-12 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_30_Andritz_Saugpresswalze_ProSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Saugpresswalze<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">SAUGPRESSWALZE<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung des Vakuumflusses in einer Saugpresswalze, um Probleme mit der Papierbahn zu identifizieren. CFD-Simulation verschiedener Betriebspunkte, Bahn- und Ventilpositionen und Vorschlag zur Behebung des Problems.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>M\u00fchelose Problemerkennung f\u00fcr den Kunden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-13 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_07_21_ProSumm_AN_flatsuctionbox.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Schwingungsanalyse in Saugkasten<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">SCHWINGUNGS-ANALYSE IN SAUGKASTEN<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung von Schwingungen in einem Flachsaugkasten. Modalanalyse bei drei verschiedenen Wasserst\u00e4nden, Bestimmung der Resonanzfrequenz und m\u00f6glicher Erregungsquellen. Vorschl\u00e4ge zur Reduzierung von Schwingungen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Langlebigkeit der Ger\u00e4te durch geringere Vibrationen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-14 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_06_24_ProSumm_Fly_knife.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Rotormesser K\u00fchlung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ROTORMESSER K\u00dcHLUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Problemerkennung f\u00fcr das K\u00fchlsystem in einem Rotormesser. Simulation von drei verschiedenen Geometrien zur Reduzierung des Druckverlustes und Optimierungsvorschl\u00e4ge zur Erh\u00f6hung des Wasserdurchsatzes f\u00fcr eine bessere K\u00fchlung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Leistungssteigerung im Schneidprozess.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-15 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_25_ProSumm_uCT.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">\u00b5-CT + CFD Simulation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">\u00b5-CT + CFD SIMULATION<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation zur Ermittlung von Porosit\u00e4t, Gurley-Zeit und Tortuosit\u00e4t verschiedener Papierproben und Vergleich mit Messungen und analytischen Berechnungen. Die Geometrien wurden aus den \u00b5-CT-Bildern gewonnen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Ergebnisse wurden genutzt um neue Bildverarbeitungstechniken zu pr\u00fcfen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-16 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_25_Flatsuctionbox_Prossum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Flachabsaugkasten<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">FLACHABSAUG-KASTEN<\/h3><p style=\"text-align:justify;padding-top:10px\">Untersuchung der Auswirkungen des Entl\u00fcftungsventils auf den Volumenstrom und die Druckverteilung in einem flachen Saugkasten. CFD-Simulation zur Beurteilung des Ventils in halb- und ganzge\u00f6ffneter Stellung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierte Ventileinstellungen f\u00fcr ausgeglichenen Durchfluss.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-17 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_25_Andritz_Wedge_Zone_Overflow.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Keilzonen-\u00dcberlauf<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">KEILZONEN-\u00dcBERLAUF<\/h3><p style=\"text-align:justify;padding-top:10px\">Transiente Mehrphasen-CFD-Simulation f\u00fcr die Entw\u00e4sserungszone einer Maschine. Bestimmung des optimalen Designs zur Minimierung der Bereiche mit problematischer Entw\u00e4sserung durch die Keilzone.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Kosteng\u00fcnstige M\u00f6glichkeit, verschiedene Konstruktionen zu testen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-18 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_25_Andritz_HB_Dilution_Control.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Verd\u00fcnnungs-Kontrolleinheit<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">VERD\u00dcNNUNGS-KONTROLLEINHEIT<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Konsistenzverteilung des Zellstoffs in einer Maschine bei einem bestimmten Verarbeitungsschritt. Untersuchung des Einflusses unterschiedlicher lokaler Verd\u00fcnnungen und der Verteilung von Inhomogenit\u00e4ten.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Die Simulation ersetzt komplexe Maschinentests.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-19 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2017_06_23_Delfort.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Lochwalze<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">LOCHWALZE<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation von Lochwalzen mit unterschiedlichen Durchmessern. Bestimmung des Einflusses von Rotationsgeschwindigkeiten und Walzenvarianten auf die Geschwindigkeitsverteilung und Wirbelintensit\u00e4t an der Austrittslippe.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effiziente Tests ohne die Notwendigkeit realer Versuche.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-20 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_12_20_OSSUM_Miba_measurement.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Fl\u00e4chengewicht Schwankung<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">FL\u00c4CHENGEWICHT SCHWANKUNG<\/h3><p style=\"text-align:justify;padding-top:10px\">Fl\u00e4chengewicht-Schwankungsmessungen von Zellstoffgemischen bei verschiedenen Schergeschwindigkeiten und Vergleich mit einer CFD-Simulation. Die Gemische mit unterschiedlichen Konsistenzen wurden vom Auftraggeber zur Verf\u00fcgung gestellt.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Zeitersparnis durch ausgelagerte Produkttests.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-21 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2020_10_12_AAG_Overpressure_protection_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">\u00dcberdruckschutz<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">\u00dcBERDRUCKSCHUTZ<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation des Massenstroms durch eine Heatbox und die Verbindungsleitungen zur Beurteilung von \u00dcberdruckschutzma\u00dfnahmen. Enth\u00e4lt ein Modell f\u00fcr Steuerventile zur Vermeidung eines hohen statischen Drucks.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effiziente und risikofreie Sicherheitsbewertung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"transport\" class=\"x-text x-text-headline e1506-e47 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">TRANSPORT<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-1705\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1705\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_03_14_ProSumm_KTM_RC390.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Motorrad K\u00fchlsystem<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">MOTORRAD K\u00dcHLSYSTEM<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der \u00e4u\u00dferen Aerodynamik eines Motorrads. Bewertung des W\u00e4rmestroms und der K\u00fchleigenschaften durch K\u00fchler- und L\u00fcfterluftstrom. Vorschl\u00e4ge zur Optimierung der Motorradk\u00fchlung.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Erh\u00f6hter Komfort f\u00fcr den Fahrer.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_05_17_RodelAustria_Schalengeometrie_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Rennrodel<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:25px\">RENNRODEL<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Analyse und Bewertung von Widerstand, Auftrieb und Str\u00f6mungsgeschwindigkeit unter dem Schlitten f\u00fcr drei verschiedene Geometrien. Vergleich der aerodynamischen Eigenschaften, um die beste Schlittengeometrie zu finden.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Wettbewerbsvorteil mit verbessertem Schlitten.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_24_Ferrari_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Windkanal-Modell<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WINDKANAL-MODELL<\/h3><p style=\"text-align:justify;padding-top:10px\">Basissimulation des Fahrzeugs im Windkanal und Bestimmung der optimalen Ribletgr\u00f6\u00dfe. Riblet-Anwendung und Aufpralltest im Windkanal unter verschiedenen Bedingungen wie H\u00f6he, Geschwindigkeit, Heckgeometrie.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Aerodynamik f\u00fcr Spitzenleistungen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_27_SolarCar_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Solar Car<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">SOLAR CAR<\/h3><p style=\"text-align:justify;padding-top:10px\">Strategischer Einsatz von Riblets bei Solarrennwagen, die Australien durchqueren, um den Luftwiderstand zu verringern und den Segeleffekt zu erh\u00f6hen, berechnet mit CFD-Simulationen. Anwendung von Riblets durch die Teams mit einem stickigen Plan.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Gute Platzierung f\u00fcr alle Teams, die Riblets verwenden.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_01_25_OESV_NACRA_17_ProSumm-2.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Nacra 17 Segeln<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">NACRA 17 SEGELN<\/h3><p style=\"text-align:justify;padding-top:10px\">Verst\u00e4ndnis des Einflusses der Oberfl\u00e4chenrauhigkeit der Folie, der Wassertiefe und des Anstellwinkels auf das Ph\u00e4nomen der \"Ventilation\" beim Segeln. Analyse durch Mehrphasensimulation (Luft und Wasser).<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Das erworbene Wissen verschafft einen Vorteil bei Wettbewerben.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_04_08_Nikon_Streetcar.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Kraftfahrzeug<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">KRAFTFAHRZEUG<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der potenziellen Verringerung des Luftwiderstands mit Riblets an einem Standardfahrzeug und Bestimmung der idealen Ribletgr\u00f6\u00dfe: Basissimulation und Vergleich mit den CFD-Daten des Kunden.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Geringerer Luftwiderstand und geringerer Kraftstoffverbrauch.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_10_Cyclic_Pitch.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Hubschrauber<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HUBSCHRAUBER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung des ge\u00e4nderten Winkels der Hubschrauberbl\u00e4tter auf die Gr\u00f6\u00dfe der Riblets. Hinzuf\u00fcgen einer benutzerdefinierten Funktion (UDF) zum CFD-Programm, um die Rotation und den Winkel der Bl\u00e4tter zu steuern.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Implementierung von UDF f\u00fcr eine realistischere Simulation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-8 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_06_Belassi_Hull_design_2p0_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Schnellboot<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">SCHNELLBOOT<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Kr\u00e4fte auf einen Bootsrumpf. Simulation mit Vereinfachung der Pumpe mit Massenfluss-Randbedingung. Optimierungsvorschlag f\u00fcr den Rumpf, um den Luftwiderstand zu verringern und die H\u00f6chstgeschwindigkeit zu erh\u00f6hen. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Bessere Leistung und Kraftstoffeinsparpotenzial.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-9 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_11_23_ProSumm_KTM_SuperAdventure.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Motorrad Aerodynamik<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:20px\">MOTORRAD AERODYNAMIK<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung verschiedener Windschutzscheibengeometrien f\u00fcr ein Motorrad bei unterschiedlichen Geschwindigkeiten. Empfehlung der optimalen Geometrie zur Reduzierung des Luftwiderstands und zur Verbesserung des Fahrerkomforts.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Pr\u00e4zise Geometrieanalyse durch Simulationen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-10 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_12_12__Nikon_Race_car_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Rennwagen<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RENNWAGEN<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation der Aerodynamik eines Rennwagens und Bewertung der Auswirkungen von Riblets. Verbesserte Einstellungen des Rennwagens und der Einsatz von Riblets erm\u00f6glichen eine Verringerung des Luftwiderstands bei gleichbleibendem Auftrieb. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Verbesserte Leistung als Wettbewerbsvorteil.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-11 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_07_07_ProSumm_ASTG_TU_Graz.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Raumfahrt Rakete<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RAUMFAHRT RAKETE<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation von Riblets an einer Rakete zur Verringerung des Luftwiderstands, zur Einsparung von Treibstoff und zur gleichzeitigen Aufrechterhaltung einer hohen Leistung. Berechnung der optimalen Ribletgr\u00f6\u00dfe und Vorschlag f\u00fcr geometrische Optimierungen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>H\u00f6here Flugh\u00f6hen f\u00fcr Rakete im Wettbewerb m\u00f6glich.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-12 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_01_31_OERV_Skeleton_Optimierung_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Skeleton<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">SKELETON<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation eines Skelettbobs zur Verringerung des Luftwiderstands und Erh\u00f6hung der Geschwindigkeit. Optimierung der Schlittengeometrie und Berechnung des positiven Effekts beim Einsatz von Riblets.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Vorsprung im Wettbewerb durch Geschwindigkeitssteigerung.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-13 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2021_12_14_trainera_Riblets.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Ruderboot<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RUDERBOOT<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD-Simulation zur Berechnung der Widerstandsreduzierung und Geschwindigkeitssteigerung durch Riblets in einem Ruderboot. Der vorhergesagte Vorteil entsprach den Wettkampfzeiten und f\u00fchrte zum mehrfachen Sieg des Teams.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Wettbewerbsvorteil durch h\u00f6here Geschwindigkeit.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-14 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2015_11_06_30_BOB.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Bob<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">BOB<\/h3><p style=\"text-align:justify;padding-top:10px\"> Entwicklung eines aerodynamisch verbesserten Bobs. Signifikante Verringerung des Luftwiderstands und Erh\u00f6hung der Geschwindigkeit durch das neue Design.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Leistungssteigerung f\u00fcr bessere Gewinnchancen.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-15 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_05_25_UVEX_Race_8_OSSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Helm<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HELM<\/h3><p style=\"text-align:justify;padding-top:10px\"> Optimierter Helm zur Reduzierung des Gesamtwiderstands.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimierter Helm zur Reduzierung des Gesamtwiderstands.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-16 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_10_25__OSSUM__Skispringer.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Skispringer<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">SKISPRINGER<\/h3><p style=\"text-align:justify;padding-top:10px\">Bewertung der Luftwiderstandsverteilung \u00fcber verschiedene K\u00f6rperteile eines Skispringers. Berechnung der optimalen Riblet-Gr\u00f6\u00dfe f\u00fcr die Skier und Empfehlungen f\u00fcr weitere Leistungsverbesserungen.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b> Die Analyse verschafft Wettbewerbsvorteile.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-17 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_05_13_OESV_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Zylinderdellen<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ZYLINDERDELLEN<\/h3><p style=\"text-align:justify;padding-top:10px\">Entwurf und Simulation einer genoppten Oberfl\u00e4che f\u00fcr einen Zylinder zur deutlichen Verringerung des Luftwiderstands. Validierung durch Vergleich der Simulation des glatten Aufbaus mit den Literaturwerten.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Effizientere Str\u00f6mung durch geringeren Widerstand.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"heattransfer\" class=\"x-text x-text-headline e1506-e49 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Heat Transfer Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2061\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2061\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_11_IDOMENEO__ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Turbine Center Frame Hot Streaks<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">TURBINE CENTER FRAME HOT STREAKS<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigation of the influence of hot streaks on the turbine center frame using CFD and Large Eddy Simulations. Comparison of unheated and heated scenarios to understand flow and mixing behavior in the turbine.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Better understanding of the machinery wear.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_12_12_JANSEN_Warmeuebertragung_ProSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Heat Transfer Analysis<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HEAT TRANSFER ANALYSIS<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigate whether a structured inner pipe surface achieves better heat output than a smooth surface. CFD calculation of the heat transfer performance of different surfaces using LES simulation.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Customer gains knowledge about Riblet applicability.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_11_11_Liebherr_Celsineo_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Cooling Module<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">COOLING MODULE<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigation of the flow field in a refrigerated trailer considering the heat transfer at the evaporator using CFD simulations. Suggestions to reduce pressure losses and attain a more uniform flow.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Performance increase of the refrigerating capacity.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_05_13_Boehler_PhaseII_OSSum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Vacuum Chamber<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">VACUUM CHAMBER<\/h3><p style=\"text-align:justify;padding-top:10px\">Determination of the heat transfer coefficients of notched specimen inside a vacuum furnace with CFD simulation. Validation of the flow conditions via temperature measurements.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimized furnace performance with simulated data.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_03_14_ProSumm_KTM_RC390.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Motorcycle Cooling System<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">MOTORCYCLE COOLING SYSTEM<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of a motorcycle's external aerodynamics. Evaluation of the heat flux and cooling properties through radiator and fan airflow. Suggestions for optimization of motorcycle cooling.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Increased comfort for the driver.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"heatexchanger\" class=\"x-text x-text-headline e1506-e51 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Heat Exchanger Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2062\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2062\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25__ProSumm_Froeling_LM1000_Basis-INTERNAL-INFO.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">1MW Heat Exchanger<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">1MW HEAT EXCHANGER<\/h3><p style=\"text-align:justify;padding-top:10px\">Assessment of the water and gas flow in a heat exchanger through CFD simulation and comparison with real data. Determination of velocities and heat flux.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimized heat exchanger via CFD flow analysis.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_07_Froeling_Warmetauscher_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">500KW Heat Exchanger<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">500KW HEAT EXCHANGER<\/h3><p style=\"text-align:justify;padding-top:10px\">Evaluation of various heat exchanger designs, aiming to replace the existing model. Analysis of the roles of radiation and water circulation, and recommendations for optimization.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Understanding important system parameters.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_IBS_Trocknungszylinder_Basis_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Yankee Dryer<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">YANKEE DRYER<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation of a yankee dryer with the water flow inside, the solids of the cylinder, and the air on the outside to investigate the temperature distribution as well as suggestions for optimized design.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Uniform temperature distribution improves drying.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"thermodynamic\" class=\"x-text x-text-headline e1506-e53 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Thermodynamic Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2063\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2063\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/02\/square_2015_11_15_Boehler_Kammerofen_neu-png.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Flat Flame Burner<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">FLAT FLAME BURNER<\/h3><p style=\"text-align:justify;padding-top:10px\">The flat flame burner for this steel furnace was simulated with an instantaneous combustion model in order simplify the burner and create a virtual model of the steel furnace. This virtual furnace model can then be used to calculate the temperature distribution on the steel parts during the heating cycle.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>The virtual model can increase efficiency and accuracy of the heating cycle for steel parts.&lt;...<\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_04_24__ProSumm_Hofmann_Drehherdofen.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Industrial Furnace<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">INDUSTRIAL FURNACE<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of the current rotary hearth furnace setup to verify the functionality and identify problematic areas to improve flow behavior at the fan and heat rods.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Better understanding and suggestions for improvements.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2019_11_11_AKE_Verdampferopt_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Freezer Evaporator<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">FREEZER EVAPORATOR<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of the mean heat flux, temperature, and velocity in an evaporation unit. Optimization of the temperature distribution, the evaporation power, and reduction of the pressure loss. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Energy saving through improved performance.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_05_27_AKE_Kuehlwanne_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Refrigerated Well<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">REFRIGERATED WELL<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Optimization of a refrigerated well to increase energy efficiency. Identification of areas with high evaporation losses and proposal for improvement measures.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Efficiency increase and energy saving.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_garraum.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Baking Oven<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">BAKING OVEN<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Analysis and optimization of the temperature and velocity distribution in a baking oven. Suggestions for improvement of the baking surface and the rotors to achieve an even temperature distribution.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Improved and consistent quality of baked goods.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"pipeflow\" class=\"x-text x-text-headline e1506-e55 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Pipe Flow Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2064\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2064\"><div class=\"flex-col-md-3 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_06_25_Froeling_Submodell_Entstaubung.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">High-Pressure Cleaning<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HIGH-PRESSURE CLEANING<\/h3><p style=\"text-align:justify;padding-top:10px\">Development of a submodel based on the results of the base simulation to verify the dust removal process, done by the injection of air through a pipe system, and suggestions for optimization.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Submodel for more complex system.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_gas-turbine-inflow.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Gas Turbine Inflow<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">GAS TURBINE INFLOW<\/h3>\r\n<p style=\"text-align:justify;padding-top:10px\">Simulation of the flow through the pipes and cyclon separator until the gas turbine inlet. Modification of the geometry to increase the level of flow steadiness at the inlet plane.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Flow analysis for optimal flow behavior.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_11_11_2_phasige_Rohrstroemung__OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Acoustic Emission Pipe Flow<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ACOUSTIC EMISSION PIPE FLOW<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigation of the effect of an increase in flow speed on the acoustic emissions. Analysis of the velocity dependence with a two-phase sedimentation mixture model and computational aeroacoustics.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Linking fluid velocity to pulp separation. <\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-3 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2020_10_12_AAG_Overpressure_protection_OSSUM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Overpressure Protection<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\"> OVERPRESSURE PROTECTION<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation of the mass flow through a heatbox and the connecting pipes to asses overpressure protection measures. Includes a model for steering valves to avoid high static pressure.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Efficient and risk-free safety assessment.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"fluidflow\" class=\"x-text x-text-headline e1506-e57 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Fluid Flow Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2065\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2065\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2025\/04\/square_2025_04_25_Nozzle_Flow.webp\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Nozzle Flow<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">NOZZLE FLOW<\/h3><p style=\"text-align:justify;padding-top:10px\">Analysis of the flow path through the nozzle, including pressure loss, cavitation, and erosion zones, as well as jet analysis focusing on spray patterns and breakup.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Any geometry can be tested in the virtual nozzle test stand and optimized for various applications.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_Water-pump.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Water Pump<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\"> WATER PUMP <\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation of the hydraulic behavior of an axial water pump. Analysis of the possible application and impact of laser-produced riblets on the pump efficiency.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Deeper insights into pump performance.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2021_12_15_Nikon_pumpT.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Radial Pump<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">RADIAL PUMP<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigation of the hydraulic behavior of a radial pump. CFD simulation of the water velocity distribution and calculation of the Riblet application impact.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Better understanding of the pump behavior.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2019_01_28_OSSUM_Bauer_Optimierung_Brunnenpumpe.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Well Pump<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WELL PUMP<\/h3><p style=\"text-align:justify;padding-top:10px\">Optimization of a well pump to increase the pumping head. CFD simulation of the velocity magnitude for improved pump geometries and calculation of the efficiency change.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Increased pump efficiency and higher capacity.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2016_04_20_116_Podilabs.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Hydrojet<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">HYDROJET<\/h3><p style=\"text-align:justify;padding-top:10px\">3D CFD simulation of a hydrojet propulsion system, analyzing key fluidic variables. Recommendation to reconsider the hydraulic design due to low efficiency caused by cavitation.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Determination of the cause for low efficiency.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_07_04_SAY_Boat-Jet-Propulsion_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Jet Propulsion<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">JET PROPULSION<\/h3><p style=\"text-align:justify;padding-top:10px\">Feasibility study for a boat jet propulsion system with CFD flow analysis to simulate the thrust for different geometries. Determination of the suitability of the propulsion system for a speed boat. <\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Informed choice for optimal boat propulsion systems.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-7 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_10_10__ProSumm_Resistant_DEM02.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Centrifugal Compressor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:30px\">CENTRIFUGAL COMPRESSION<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of the impact of Riblet foil on the diffuser of the compressor and Riblet coating on the split volute. Increase of polytropic efficiency when Riblets are applied on the volute.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Performance increase of the compressor.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"airflow\" class=\"x-text x-text-headline e1506-e59 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Air Flow Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2066\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2066\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_TLT_POC_Windkanal-Riblets_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Wind Tunnel Fans<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WIND TUNNEL FANS<\/h3><p style=\"text-align:justify;padding-top:10px\">Investigation of the Riblet impact on rotor and stator of a 0.5m model of a wind tunnel ventilator. Simulations for three different operating points, design of Riblets, and performance tests.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Proof of concept for efficiency increase.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_turbine.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Wind Turbine Model<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">WIND TURBINE MODEL<\/h3><p style=\"text-align:justify;padding-top:10px\">Evaluation of the power output increase at a model wind turbine with Riblets in a wind tunnel. Analysis of Riblet optimal size and design impact on wind turbine performance.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Enhanced power output and performance of wind turbines.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_06_22_Nikon_fan_blade_CA_ProSumm.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Turbofan<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">TURBOFAN<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of the jet engine fan stage for 3 different operating points and Riblet impact on rotor and stator. Improvement of total pressure rise and efficiency due to Riblet application.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Potential efficiency increase for jet engine.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2020_08_10_YASA_eMotor-Unit_OSSUM.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Electronic Motor<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ELECTRONIC MOTOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Estimation of the Riblet impact on reducing internal losses in an eMotor when applied to all surfaces. Simulation of the velocity distribution and wall shear stress at different speeds.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Power saving and efficiency increase for eMotor.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2024_05_06__ProSumm_LO_Aebi-Schmidt.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Cabin Ventilation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">CABIN VENTILATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Calculation of the cabin ventilation. Analysis of the volume flow and velocity distribution on the outflow nozzles. Proposal for optimization of channels for a better flow distribution.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Competetive advantage through human comfort analysis.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-6 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_04_14_ProSumm_FACC_Ventilation_system_C2.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Aircraft Cabin Ventilation<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">AIRCRAFT CABIN VENTILATION<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of the volume flow for an airplane cabine ventilation system. Calculation of maximum velocity and backpressure on the outlet and optimization proposals to meet industry standards.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimization of proposed system to reach requirements.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"particle\" class=\"x-text x-text-headline e1506-e61 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Particle Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2067\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2067\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_05_10_ProSumm_Kappa_AxialZyklon.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Cyclone Filter<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">CYCLONE FILTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation of a standard geometry of an axial cyclone for centrifugal particle separation with regard to pressure loss and particle separation. Flow analysis and optimization proposal for cyclone geometry.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Improved geometry for particle separation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_08_16__ProSumm_Primetals_Tropenabscheider.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Demister<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">DEMISTER<\/h3><p style=\"text-align:justify;padding-top:10px\">Computational Fluid Dynamics (CFD) Simulation of a planned droplet separator with additional particle analysis. Better understanding of the flow behavior and suggestions for fixes for design flaws.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>System test and fixes ahead of prototype development.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-3 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_05_23__Primetals__Raw_gas_duct.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Raw Gas Duct<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RAW GAS DUCT<\/h3><p style=\"text-align:justify;padding-top:10px\">Simulation of the paths of mixed particles with different diameters in a raw gas duct. Suggestions for the homogenization of the particle distribution in the filter boxes.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Optimization of the filtering mechanism.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-4 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2017_06_26_HTM.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Particle Atomization<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\"> PARTICLE ATOMIZATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Flow optimization of a particle atomization system to improve the jet quality. Simulation of basic and variant geometry to calculate the changed flow in the area of the jet nozzle.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Design comparison to find best option for prototype.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-5 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2023_01_31_Froeling_Pelletkessel_ProSumm.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Pellet Boiler<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">PELLET BOILER<\/h3><p style=\"text-align:justify;padding-top:10px\">Calculation of the dust particle trajectories to the electrostatic precipitator in a pellet boiler. Optimization proposals to increase the dust particle separation efficiency.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Enhanced dust separation for cleaner pellet boilers.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"shockwave\" class=\"x-text x-text-headline e1506-e63 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Shock Wave Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2068\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2068\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/08\/square_2022_07_07_ProSumm_ASTG_TU_Graz.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Aerospace Rocket<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">AEROSPACE ROCKET<\/h3><p style=\"text-align:justify;padding-top:10px\">CFD simulation of riblets on a rocket to reduce drag, save fuel, and simultaneously maintain high performance. Calculation of the optimal Riblet size and proposal for geometrical optimizations.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Higher altitudes possible for rocket in competition.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><div id=\"acoustic\" class=\"x-text x-text-headline e1506-e65 m15u-1 m15u-2 m15u-3 m15u-6 m15u-9 m15u-d\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Acoustic Simulation<\/h1><\/div><\/div><\/div><div style=\"cursor: help;\">\n<div id=\"flipbox-widget-2082\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-2082\"><div class=\"flex-col-md-4 cfb-box-1 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_akustik.jpg\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Acoustic Noise Minimization<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">ACOUSTIC NOISE MINIMIZATION<\/h3><p style=\"text-align:justify;padding-top:10px\">Acoustic noise attenuation and analysis through targeted flow and design measures. Precise simulation of turbulent flows through numerical methods (CAA) or application of models for sound generation (FW-H).<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Understanding and minimization of noise generation.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><div class=\"flex-col-md-4 cfb-box-2 cfb-box-wrapper\">\r\n                                <div class=\"flipbox-container cfb-layout-4 cfb-flip click\" data-effect=\"y\" data-height=\"equal\">\r\n                                  <div class=\"flipbox-front-layout cfb-data\">\r\n                                    <div class=\"flipbox-image-content\">\r\n                                      <div class=\"flipbox-image-top\"><img decoding=\"async\" src=\"https:\/\/www.bionicsurface.com\/wp-content\/uploads\/2024\/09\/square_2018_05_23_OSSUM_Ventrex_HH_Resonator.png\" alt=\"\" \/><\/div>\r\n                                      <div class=\"flipbox-img-content\">\r\n                                        <h5 style=\"color:#205090\">Resonator<\/h5>\r\n                                      <\/div>\r\n                                    <\/div>\r\n                                    <\/div>\r\n                                  <div class=\"flipbox-back-layout cfb-data\" style=\"background-color:#205090\">\r\n                                    <p><h3 style=\"color:white;font-size:35px\">RESONATOR<\/h3><p style=\"text-align:justify;padding-top:10px\">Examination of the impact of a Helmholtz Resonator on the acoustic signal. Simulation of the altered inflow and its effect on vibration behavior and comparison to other variants.<\/p><p style=\"background-color:white;color:#205090;border-radius:10px;margin-top:30px\"><b>Time-effective comparison of different setups.<\/b><\/p><\/p><\/div>\r\n                                <\/div>\r\n                              <\/div><\/div>\n<\/div><a class=\"x-anchor x-anchor-button has-graphic has-particle e1506-e67 m15u-11 m15u-13 m15u-15 m15u-16 contact-button\" tabindex=\"0\" href=\"\/de\/contact\/\" target=\"_blank\"><span class=\"x-particle is-primary\" data-x-particle=\"scale-x inside-t_l\" aria-hidden=\"true\"><span style=\"\"><\/span><\/span><span class=\"x-particle is-secondary\" data-x-particle=\"scale-x inside-b_l\" aria-hidden=\"true\"><span style=\"\"><\/span><\/span><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf101;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Kontakt<\/span><\/div><\/div><\/a><a class=\"x-anchor x-anchor-button has-graphic has-particle e1506-e68 m15u-11 m15u-13 m15u-15 m15u-16 team-button\" tabindex=\"0\" href=\"\/de\/company\/#teamde\" target=\"_blank\"><span class=\"x-particle is-primary\" data-x-particle=\"scale-x inside-t_l\" aria-hidden=\"true\"><span style=\"\"><\/span><\/span><span class=\"x-particle is-secondary\" data-x-particle=\"scale-x inside-b_l\" aria-hidden=\"true\"><span style=\"\"><\/span><\/span><div class=\"x-anchor-content\"><span class=\"x-graphic\" aria-hidden=\"true\"><i class=\"x-icon x-graphic-child x-graphic-icon x-graphic-primary\" aria-hidden=\"true\" data-x-icon-s=\"&#xf101;\"><\/i><\/span><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Das Team<\/span><\/div><\/div><\/a><\/div>\n","protected":false},"excerpt":{"rendered":"<p>MULTIPHYSIKKategorieBIOMEDIZINENERGIEMASCHINENBAUPROZESSEPAPIERTRANSPORTSimulationHeat TransferHeat ExchangerThermodynamicPipe FlowFluid FlowAir FlowParticleShock WaveAcousticBIOMEDIZIN Mikrofluidik-Sensor MICROFLUIDIK-SENSORIdentifizierung der kritischen Bereiche f\u00fcr die Bildung von Luftblasen und f\u00fcr das Zur\u00fcckbleiben von Fl\u00fcssigkeit. Validierung der Basissimulation und Pr\u00fcfung der Angemessenheit verschiedener \u00c4nderungen am Aufbau.Kosten- und zeiteffiziente Pr\u00fcfmethode f\u00fcr den Kunden. Auftauger\u00e4t AUFTAUGER\u00c4TGrundlegende 3D-Simulation zur Analyse der Str\u00f6mung und des W\u00e4rmeflusses innerhalb des Defroster f\u00fcr mehrere Beutel. Identifizierung von Bereichen mit &#8230; <\/p>\n<div><a href=\"https:\/\/www.bionicsurface.com\/de\/multiphysics-german\/\" class=\"more-link\">Read More<\/a><\/div>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-1506","page","type-page","status-publish","hentry","no-post-thumbnail"],"_links":{"self":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1506","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/comments?post=1506"}],"version-history":[{"count":21,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1506\/revisions"}],"predecessor-version":[{"id":2153,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1506\/revisions\/2153"}],"wp:attachment":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/media?parent=1506"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}