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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
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. Computational fluid dynamics is an essential enabler for science and for many outstanding societal challenges. Many key advanced and emerging technologies require unprecedented control of heat and mass transfer
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the atmosphere, and the interactions between wind farms. This project represents an opportunity for us to advance our collective knowledge of fluid and atmospheric dynamics relevant to wind energy. Join us in
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to push the boundaries of fundamental fluid and atmospheric dynamics, enhance wind farm efficiency, and deepen our understanding of their interaction with the atmosphere. Join us in pushing the boundaries
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industrial innovators and will provide a dynamic and stimulating environment for your development as a research scientist. As part of the PhD program, you would have the opportunity to receive further
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excellent academic groups and industrial innovators and will provide a dynamic and stimulating environment for your development as a research scientist. As part of the PhD program, you would have the
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Ship Propulsion (WASP) focusing on three research themes: 1) Fluid dynamics, 2) Design and operation, and 3) Sustainable and societal impact. In the fluid dynamics theme, 4 PhD projects are open to study
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expertise in Computational Fluid Dynamics and multiphase turbulent flows based in the School of Engineering . The primary project teams are based at Newcastle University and the University of Edinburgh. You
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our team. We will work towards understanding of the formation of bandgaps in transitional fluid flows and using them to suppress wave-like boundary layer instabilities, thus delaying laminar-turbulent
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for individuals with background on Mechanical/Enviromental/Civil Engineering, or physics. Strong background in fluid dynamics, experience in computational fluid dynamics, and programming in high-level (MATLAB