{"id":2079,"date":"2025-04-01T15:13:06","date_gmt":"2025-04-01T13:13:06","guid":{"rendered":"https:\/\/www.bionicsurface.com\/?page_id=2079"},"modified":"2025-04-08T13:29:25","modified_gmt":"2025-04-08T11:29:25","slug":"multiphysics-kw-german","status":"publish","type":"page","link":"https:\/\/www.bionicsurface.com\/de\/multiphysics-kw-german\/","title":{"rendered":"Multiphysics Simulationen"},"content":{"rendered":"<div id=\"cs-content\" class=\"cs-content\"><div id=\"biomedical\" class=\"x-text x-text-headline e2079-e1 m1lr-0 m1lr-1 m1lr-2 m1lr-3 m1lr-4 m1lr-5\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">MULTIPHYSICS<\/h1><\/div><\/div><\/div><div class=\"x-text x-text-headline e2079-e2 m1lr-0 m1lr-4 m1lr-5 m1lr-6 m1lr-7 m1lr-8\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Choose simulation:<\/h1><\/div><\/div><\/div><div class=\"x-row e2079-e3 m1lr-f m1lr-g m1lr-i\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e4 m1lr-t m1lr-u m1lr-v m1lr-w m1lr-x m1lr-y m1lr-z\"><a class=\"x-anchor x-anchor-button e2079-e5 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e6 m1lr-t m1lr-u m1lr-w m1lr-z m1lr-10 m1lr-11 m1lr-12\"><a class=\"x-anchor x-anchor-button e2079-e7 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-german\/#heatexchanger\"><div class=\"x-anchor-content\"><div class=\"x-anchor-text\"><span class=\"x-anchor-text-primary\">Heat Exchange<\/span><\/div><\/div><\/a><\/div><div class=\"x-col e2079-e8 m1lr-t m1lr-u m1lr-v m1lr-w m1lr-y m1lr-z m1lr-13\"><a class=\"x-anchor x-anchor-button e2079-e9 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e10 m1lr-t m1lr-u m1lr-w m1lr-z m1lr-11 m1lr-12 m1lr-14\"><a class=\"x-anchor x-anchor-button e2079-e11 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e12 m1lr-t m1lr-u m1lr-w m1lr-x m1lr-y m1lr-z m1lr-15\"><a class=\"x-anchor x-anchor-button e2079-e13 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e14 m1lr-t m1lr-u m1lr-w m1lr-z m1lr-10 m1lr-11 m1lr-12\"><a class=\"x-anchor x-anchor-button e2079-e15 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e16 m1lr-t m1lr-u m1lr-w m1lr-y m1lr-z m1lr-13 m1lr-15\"><a class=\"x-anchor x-anchor-button e2079-e17 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e18 m1lr-t m1lr-u m1lr-w m1lr-z m1lr-11 m1lr-12 m1lr-14\"><a class=\"x-anchor x-anchor-button e2079-e19 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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 e2079-e20 m1lr-t m1lr-u m1lr-w m1lr-z m1lr-12 m1lr-16\"><a class=\"x-anchor x-anchor-button e2079-e21 m1lr-19\" tabindex=\"0\" href=\"\/de\/multiphysics-kw-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=\"heattransfer\" class=\"x-text x-text-headline e2079-e22 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-9 m1lr-a\"><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 class=\"x-row e2079-e23 m1lr-f m1lr-h m1lr-j m1lr-k\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e24 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e25 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e26 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e27 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e29 m1lr-0 m1lr-2 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e30 m1lr-f m1lr-h m1lr-j m1lr-l\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e31 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e32 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e33 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e34 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e36 m1lr-0 m1lr-2 m1lr-4 m1lr-8 m1lr-a m1lr-c m1lr-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 class=\"x-row e2079-e37 m1lr-f m1lr-h m1lr-j m1lr-m\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e38 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e39 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e40 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e41 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e43 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e44 m1lr-f m1lr-h m1lr-j m1lr-n\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e45 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e46 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e47 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e48 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e50 m1lr-0 m1lr-2 m1lr-4 m1lr-8 m1lr-a m1lr-c m1lr-e\"><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 class=\"x-row e2079-e51 m1lr-f m1lr-h m1lr-j m1lr-o\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e52 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e53 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e54 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e55 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e57 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e58 m1lr-f m1lr-h m1lr-j m1lr-p\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e59 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e60 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e61 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e62 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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 e2079-e64 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e65 m1lr-f m1lr-h m1lr-j m1lr-q\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e66 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e67 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e68 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e69 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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=\"acoustic\" class=\"x-text x-text-headline e2079-e71 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e72 m1lr-f m1lr-h m1lr-j m1lr-r\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e73 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e74 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e75 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e76 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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><div id=\"shockwave\" class=\"x-text x-text-headline e2079-e78 m1lr-0 m1lr-2 m1lr-3 m1lr-4 m1lr-8 m1lr-a m1lr-c\"><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 class=\"x-row e2079-e79 m1lr-f m1lr-h m1lr-j m1lr-s\"><div class=\"x-row-inner\"><div class=\"x-col e2079-e80 m1lr-t m1lr-z m1lr-17\"><div class=\"x-text x-text-headline e2079-e81 m1lr-0 m1lr-3 m1lr-5 m1lr-6 m1lr-8 m1lr-b\"><div class=\"x-text-content\"><div class=\"x-text-content-text\"><h1 class=\"x-text-content-text-primary\">Click images for details<\/h1><\/div><\/div><\/div><\/div><div class=\"x-col e2079-e82 m1lr-t m1lr-v m1lr-w m1lr-12 m1lr-18\"><i class=\"x-icon e2079-e83 m1lr-1a\" aria-hidden=\"true\" data-x-icon-s=\"&#xf245;\"><\/i><\/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>\n","protected":false},"excerpt":{"rendered":"<p>MULTIPHYSICSChoose simulation:Heat TransferHeat ExchangeThermodynamicPipe FlowFluid FlowAir FlowParticleShock WaveAcousticHeat Transfer SimulationClick images for details Turbine Center Frame Hot Streaks TURBINE CENTER FRAME HOT STREAKSInvestigation 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.Better understanding of the machinery wear. &#8230; <\/p>\n<div><a href=\"https:\/\/www.bionicsurface.com\/de\/multiphysics-kw-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-2079","page","type-page","status-publish","hentry","no-post-thumbnail"],"_links":{"self":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/2079","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=2079"}],"version-history":[{"count":4,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/2079\/revisions"}],"predecessor-version":[{"id":2088,"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/pages\/2079\/revisions\/2088"}],"wp:attachment":[{"href":"https:\/\/www.bionicsurface.com\/de\/wp-json\/wp\/v2\/media?parent=2079"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}