{"id":1878,"date":"2024-10-03T16:08:08","date_gmt":"2024-10-03T14:08:08","guid":{"rendered":"https:\/\/www.bionicsurface.com\/multiphysic-mobile-german\/"},"modified":"2024-10-08T13:55:42","modified_gmt":"2024-10-08T11:55:42","slug":"multiphysics-mobile-2","status":"publish","type":"page","link":"https:\/\/www.bionicsurface.com\/de\/multiphysics-mobile-2\/","title":{"rendered":"Multiphysic Mobile (German)"},"content":{"rendered":"<div id=\"cs-content\" class=\"cs-content\"><div class=\"x-section x-hide-lg x-hide-md x-hide-sm x-hide-xl x-hide-xs e1878-e1 m1g6-0\" id=\"intro\"><div class=\"x-row x-container max width e1878-e2 m1g6-3 m1g6-4 m1g6-8 m1g6-9\"><div class=\"x-row-inner\"><div class=\"x-col e1878-e3 m1g6-e m1g6-f\"><div class=\"x-text x-content e1878-e4 m1g6-j m1g6-k m1g6-1 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\">CFD SIMULATION & ANALYSIS<\/div><div class=\"x-text x-text-headline e1878-e5 m1g6-n m1g6-o m1g6-p m1g6-q m1g6-r m1g6-s m1g6-1 m1g6-2 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Problem solving through advanced<\/br>CFD simulations<\/h1><\/div><\/div><\/div><\/div><\/div><\/div><div class=\"x-row x-container max width e1878-e6 m1g6-3 m1g6-4 m1g6-8 m1g6-a\"><div class=\"x-row-inner\"><div class=\"x-col e1878-e7 m1g6-e m1g6-f\"><div class=\"x-text x-content e1878-e8 m1g6-j m1g6-l m1g6-m m1g6-1 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\">The use of advanced computer systems has changed engineering substantially and is now indispensable. Within the framework of CAE (Computer-Aided Engineering), it is CFD (Computational Fluid Dynamics) which enables the modeling of heat transfer and complex fluxes in defined areas. It describes the segmentation of a considered volume into multiple cells of a very small size and the numerical calculation of the cells\u2019 properties and its local flux conditions. <\/div><\/div><div class=\"x-col e1878-e9 m1g6-e m1g6-f\"><div class=\"x-text x-content e1878-e10 m1g6-j m1g6-l m1g6-1 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\">Such simulations of the conditions in the entire area provide valid and accurate approximations of reality. The main constraint of the technology is the available computational power due to the calculations\u2019 high demands in this regard.<\/div><\/div><\/div><\/div><div class=\"x-row x-container max width e1878-e11 m1g6-3 m1g6-5 m1g6-6 m1g6-b m1g6-c m1g6-1 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\"><div class=\"x-row-inner\"><div class=\"x-col e1878-e12 m1g6-e m1g6-g m1g6-h\"><div class=\"x-text x-text-headline e1878-e13 m1g6-n m1g6-r m1g6-s m1g6-t m1g6-u m1g6-v\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">01<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e14 m1g6-e m1g6-f m1g6-g m1g6-i\"><div class=\"x-text x-text-headline e1878-e15 m1g6-n m1g6-q m1g6-r m1g6-s m1g6-t m1g6-v m1g6-w\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Better Understanding<\/br>\nof your Problem<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e16 m1g6-e m1g6-g m1g6-h\"><div class=\"x-text x-text-headline e1878-e17 m1g6-n m1g6-r m1g6-t m1g6-u m1g6-v\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">02<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e18 m1g6-e m1g6-f m1g6-g m1g6-i\"><div class=\"x-text x-text-headline e1878-e19 m1g6-n m1g6-q m1g6-r m1g6-s m1g6-t m1g6-v m1g6-w\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Efficient Evaluation<\/br> \nof Different Variants<\/h1><\/div><\/div><\/div><\/div><\/div><\/div><div class=\"x-row x-container max width e1878-e20 m1g6-3 m1g6-5 m1g6-7 m1g6-b m1g6-d m1g6-1 x-effect-exit\" data-x-effect=\"{&quot;scroll&quot;:true,&quot;offsetTop&quot;:&quot;10%&quot;,&quot;offsetBottom&quot;:&quot;10%&quot;,&quot;behaviorScroll&quot;:&quot;fire-once&quot;}\"><div class=\"x-row-inner\"><div class=\"x-col e1878-e21 m1g6-e m1g6-g m1g6-h\"><div class=\"x-text x-text-headline e1878-e22 m1g6-n m1g6-r m1g6-t m1g6-u m1g6-v\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">03<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e23 m1g6-e m1g6-f m1g6-g m1g6-i\"><div class=\"x-text x-text-headline e1878-e24 m1g6-n m1g6-q m1g6-r m1g6-s m1g6-t m1g6-v m1g6-w\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Save Experiment Costs<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e25 m1g6-e m1g6-g m1g6-h\"><div class=\"x-text x-text-headline e1878-e26 m1g6-n m1g6-r m1g6-t m1g6-u m1g6-v\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">04<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e1878-e27 m1g6-e m1g6-f m1g6-g m1g6-i\"><div class=\"x-text x-text-headline e1878-e28 m1g6-n m1g6-q m1g6-r m1g6-s m1g6-t m1g6-v m1g6-w\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Quick Results<\/h1><\/div><\/div><\/div><\/div><\/div><\/div><\/div><div id=\"biomedical\" class=\"x-text x-text-headline e1878-e29 m1g6-n m1g6-t m1g6-u m1g6-v m1g6-x m1g6-y\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">BIOMEDICAL<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1888\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1888\"><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_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-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_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-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_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><div id=\"energy\" class=\"x-text x-text-headline e1878-e31 m1g6-n m1g6-p m1g6-u m1g6-v m1g6-x m1g6-y m1g6-z\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">ENERGY<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1884\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1884\"><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_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-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_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-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_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><div id=\"mechanical\" class=\"x-text x-text-headline e1878-e33 m1g6-n m1g6-p m1g6-u m1g6-v m1g6-y m1g6-z m1g6-10\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">PLANT & MECHANICAL ENGINEERING<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1886\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1886\"><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_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-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_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-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_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><div id=\"processes\" class=\"x-text x-text-headline e1878-e35 m1g6-n m1g6-p m1g6-u m1g6-v m1g6-x m1g6-y m1g6-z\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">PROCESSES<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1887\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1887\"><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_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-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_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-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_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><div id=\"pulppaper\" class=\"x-text x-text-headline e1878-e37 m1g6-n m1g6-p m1g6-u m1g6-v m1g6-y m1g6-z m1g6-11\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">PULP & PAPER<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1885\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1885\"><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_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-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_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-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_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><div id=\"transport\" class=\"x-text x-text-headline e1878-e39 m1g6-n m1g6-p m1g6-u m1g6-v m1g6-x m1g6-y m1g6-z\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">TRANSPORT<\/h1><\/div><\/div><\/div><div id=\"flipbox-widget-1882\" class=\"cfb_wrapper layout-4 flex-row\" data-flipboxid=\"flipbox-widget-1882\"><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_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-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_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-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_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><\/div>\n","protected":false},"excerpt":{"rendered":"<p>CFD SIMULATION &#038; ANALYSISProblem solving through advancedCFD simulationsThe use of advanced computer systems has changed engineering substantially and is now indispensable. Within the framework of CAE (Computer-Aided Engineering), it is CFD (Computational Fluid Dynamics) which enables the modeling of heat transfer and complex fluxes in defined areas. It describes the segmentation of a considered volume into multiple cells of a &#8230; <\/p>\n<div><a href=\"https:\/\/www.bionicsurface.com\/de\/multiphysics-mobile-2\/\" 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-1878","page","type-page","status-publish","hentry","no-post-thumbnail"],"_links":{"self":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1878","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=1878"}],"version-history":[{"count":3,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1878\/revisions"}],"predecessor-version":[{"id":1889,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/1878\/revisions\/1889"}],"wp:attachment":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/media?parent=1878"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}