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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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(https://www.nature.com/articles/srep13163 ). In this PhD project, you will investigate the fluid dynamics of flexible fibers in complex acoustofluidics flows, and explore the potential for separation and
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(https://www.nature.com/articles/srep13163 ). In this PhD project, you will investigate the fluid dynamics of flexible fibers in complex acoustofluidics flows, and explore the potential for separation and
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100%, Zurich, fixed-term This project is a collaboration between the Institute of Fluid Dynamics at ETH Zurich and the ID19 microtomography beamline at the ESRF, Grenoble, France. The research in
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) provide a good insight into our research in these areas. Whilst most research until now has concentrated on droplets of simple fluids (e.g. water), in some of the most important industrial applications (e.g
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, with a focus on measuring and predicting complex fluid/plasma dynamics in real systems. We are pleased to announce a four year PhD studentship in Astrophysical and Geophysical Fluid Dynamics funded by
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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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thresholds for vibration during transportation difficult to establish. The aim of this project is to experimentally address the multiphase fluid dynamics of shaking vials and intravenous bags containing liquid
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“Flow4Algae”. This experimental project aims to understand the multiscale fluid dynamics of living microalgae suspensions. We are particularly interested in the interplay between flow conditions, cell