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requirements: A PhD degree in Aerospace Engineering, Mechanical Engineering, or a related engineering discipline. Solid knowledge of fluid mechanics, computational fluid dynamics (CFD), and optimization using
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fluid mechanics, offshore applications and/or systems design. Experience with (design of) complex coupled systems, preferably in the maritime/offshore environment. An open, communicative, and
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generation, conversion, and utilization in different electro- and thermo-mechanical systems where the study of heat transfer, fluid mechanics, reactive flows, as well as solid mechanics plays a central role
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fluid mechanics, offshore applications and/or systems design. Experience with (design of) complex coupled systems, preferably in the maritime/offshore environment. An open, communicative, and
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in the Earth's outer core, with implications for deep Earth processes [1]. A variety of inverse methods (data assimilation, machine learning, etc.) has been employed to recover the fluid motions in
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. Strong background in instrumentation and measurement techniques. Familiarity with fluid dynamics and/or aerodynamic testing. Experimental skills: Experience with wind tunnel testing, flow measurements
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developing the technical basis for the first fusion nuclear facility and the position will involve several disciplines, with an intended focus on design, analysis, and optimization of fluid flows in tritium
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interdisciplinary team. About the Department The Saint Anthony Falls Laboratory is a globally recognized hub for pioneering research in experimental and computational fluid mechanics, hydrology, and earth-surface
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fluid). Position You will carry out high-quality scientific research and develop electrochemical analysis strategies with microneedles. You will develop new research projects according to the strategic
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Department (DRIS), you will participate in research activities on the optimization of non-Newtonian fluid injection for the decontamination of polluted soils. Tests will be conducted, in 1D columns, in 2D