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Ultrasound sensors for quantitatively measuring the viscosity of flows. Job description Continuous, non-invasive measurements of fluid properties are instrumental in factories that produce food
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applied physics other related disciplines. Demonstrated knowledge in at least one of the following areas: porous media flow computational fluid dynamics (CFD) pore-network modelling lattice Boltzmann method
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Application deadline: 30.09.26 Research theme: Applied Mathematics, Thermal-Fluid-Dynamics, Multi-Physics How to apply: https://uom.link/pgr-apply-2425 UK only This 4 year PhD project is fully
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. Job requirements You are have a strong interest in experimental fluid dynamics and are motivated to push the boundaries of measurement techniques for full-scale measurements. You also have the following
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sectors such as aerospace and energy. In various industrial applications (i.e., pipelines carrying water), fluid/structure interaction falls into the category of heavy fluid loading conditions, making
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engineering (Master's degree or engineering degree equivalent) and a strong interest in experimental research. Prior experience with computational fluid dynamics (CFD) modeling tools such as COMSOL, FLUENT
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, you should be equipped with the following qualifications and technical skills: Solid background in Structural Dynamics and Finite Element Modelling. Knowledge of or strong interest in Fracture Mechanics
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incorporation of essential safety functions directly into energy-efficient hydraulic system architectures. Integrating these functionalities without compromising system efficiency or dynamic performance
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(focusing on polar and alpine environments) and geophysical fluid dynamics. We collaborate with several colleagues from the Physics Laboratory, who are experts in hydrodynamics/climate research (about 15 PIs
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. A good knowledge and/or experience in heat transfer is essential, as is the ability to work well in a team. Prior experience in the areas of computational fluid dynamics, chemistry, machine learning