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” focusing on the effect of a fluctuating environment on the collective dynamics of self-propelled agents, a numerical part on “reinforcement learning” focusing on optimizing communication between agents in a
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conduct the research activities into the computational fluid dynamics simulation and optimisation of vortex reactors. You will develop physical and numerical models for the three-dimensional simulation
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chemistry and complex fluids, such as blood plasma, cell culture media, or lung lining fluids. The researcher will characterise the nanomaterials in complex media with multiple techniques, such as dynamic
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dynamics, turbulence, fluid dynamics, model interpretation, acoustic data, or field data processing. Additional desirable experience includes: bio-physical interactions, fieldwork, evidence of working at sea
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swimming biomechanics, fluid dynamics, and state-of-the-art fish-detection techniques. Your Duties and Responsibilities: Designing, constructing and testing prototypes of novel gear for the detection
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understanding of flatfish escape behavior and swimming biomechanics, fluid dynamics, and state-of-the-art fish-detection techniques. Your Duties and Responsibilities: Designing, constructing and testing
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of Computational Fluid Dynamics (CFD) modeling to a wide range of problems relevant to rotating detonation engines (RDE’s) as well as more fundamental detonation and deflagration processes including deflagration
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(assessment of membrane processes and water quality analysis) are required. Experience in computational fluid dynamics modelling of water treatment and desalination processes is an advantage. Willingness
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Division of Fluid Dynamics Meeting, the British Applied Mathematics Colloquium, Euromech) collaborate with and travel to meet colleagues in the United States and Europe co-supervise research projects
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, computational fluid dynamics, activation decay codes, kinetic Monte Carlo codes, particle transport codes, finite element or finite different methods, peridynamics, phase field models, multi-objective