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Field
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status rate at the School of Mechanical, Aerospace and Civil Engineering at the University of Sheffield under the supervision of Professor Pierre Ricco (http://www.pierre-ricco.co.uk/). Additionally
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to capture experimentally due to the small scales and opacity of the matrix. Consequently, computational fluid dynamics (CFD) is the best approach for improving these burners. This PhD aims to investigate NH3
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systems, and relationship between microstructure and rheology in complex fluids. Further information may be obtained from: Theyencheri NARAYANAN (tel.: +33 (0)4 76 88 21 21, email: narayan@esrf.fr
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will work towards the specific challenge of understanding the formation of bandgaps in swept wing transitional fluid flows and using them to suppress wave-like boundary layer instabilities, thus delaying
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-conductivity room-temperature liquid metal (non-toxic and non-combustible) as the heat transfer fluid, aiming to achieve a 30% reduction in cost and a 50% reduction in critical materials. Your Role: The Heart
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computational techniques. In particular, we are looking for curious, enthusiastic and hard-working candidates with the following expertise: -- strong understanding of concepts in nonlinear waves and fluid
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field strong analytical skills, with knowledge of fluid dynamics, aerodynamics, and numerical simulation methods basic programming skills (e.g., Python, MATLAB, or similar) and familiarity with data
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to explore the fundamental and applied problems pertaining to binary fluids that exhibit a temperature sensitive miscibility and to investigate the physics of interfacial instabilities when interfacial tension
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horizontal “team spirit” and continuously traverse boundaries between theory, simulations, and experiments towards understanding and controlling fluid flows. Our team, strives for a co-creative and stimulating
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pumps using reactive fluids. Summary of the topic: In the context of energy transition and decarbonisation of residential heating, the development of high-efficiency, low environmental impact