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Field
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Fluid dynamics of microplastics: fiber-flow interaction simulations to reduce plastic microfiber pollutant release Increasing scientific evidence and public awareness of risks from micro-plastics
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Project Description Computational Fluid Dynamics (CFD) is a key element of modern engineering R&D and of digital engineering processes in Industry4.0. In a CFD code, the fundamental equations of fluid flow
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TU Delft is looking for talented PhD candidates with interest in quantum computing and computational fluid dynamics to join the Quantum-CFD research team at EEMCS. The Quantum-CFD research team
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agrivoltaic systems on solar radiation distribution, microclimate, soil moisture and crop productivity. One area of research that we aim to further develop is the use computational fluid dynamic (CFD
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to further develop is the use computational fluid dynamic (CFD) techniques to assess microclimate conditions. Modelling activities will be supported by experiments conducted at our installed agrivoltaic
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-Stokes framework, the LBM shows its strengths in adeptly managing complex boundary conditions and leverages the power of parallel computing. It provides a powerful platform for addressing the fluid
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discipline. Strong background in Heat Transfer, fluid dynamics Experience with computational fluid dynamics; metallurgical processes Excellent written and oral communication skills in English Ability to work
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of the group Fluids & Flows of the Department of Applied Physics and contribute to our research line of Micro- and Nanofluidics. This project is part of a larger research program that involves close
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Irène Curie Fellowship No Department(s) Mechanical Engineering Reference number V35.7571 Job description Computational fluid dynamics is a vital tool for scientific research and addressing
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-students with a solid background in fluid dynamics, statistical physics, computational physics and high-performance computing. A master’s degree (or an equivalent university degree) in (applied) physics