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Field
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investigate immersion cooling in general, with the main focus on waste-heat upgrade via two-phase immersion cooling (2PIC), where the fluid boils directly on the chip surface and enables highly efficient heat
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advanced imaging, the project will map how ion transport and micro-fluid dynamics couple to interfacial energetics, explaining field-responsive changes that remain hidden in equilibrium-centric models
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topic of atmosphere-lithosphere interactions involving volatile elements in rocks, fluids and silicate melts under the exotic Pressure-Temperature-Composition parameter space covered by exoplanetary
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, statistics or fluid dynamics Excellent knowledge of statistics Proven knowledge of Python, R, Matlab or a similar programming language Experience with Linux/UNIX environments Excellent oral and written
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of Excellence "BlueMat: Water-Driven Materials" (www.tuhh.de/bluemat ) and contribute to one of Europe?s most exciting research initiatives. Collaborate with a dynamic, interdisciplinary team that combines
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validation of the numerical model. Candidates should be holding a MSc degree in Engineering (or equivalent), with demonstrated experience in computational fluid dynamics (CFD), preferably in hydraulic
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dispersion. Yet conventional Computational Fluid Dynamics (CFD) workflows rely on watertight geometric models and volumetric meshes that are slow, complex, and costly to produce. Within the POINT-TWINS project
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fluid dynamics and heat transfer to study multiphase flow phenomena. The goal is to integrate theoretical and experimental fluid dynamics with modern computational tools to analyze and predict multiphase
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Fluid Dynamics CFD environment and simulations including: - Computation of the microwave field, Coupling of the microwave field with the plasma - Computation of elementary ionization, recombination and
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PHD DEVELOPMENT AND EXPERIMENTAL VALIDATION OF UNDERGROUND SAND-BASED THERMAL ENERGY STORAGE SYSTEMS
system dynamics. You will evaluate thestorage envelope and insulation performance (e.g. glass foam aggregate) from a building-physics perspective, focusing on heat losses, moisture migration, and