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conditions together with the modelling that underpins them. We welcome applications from candidates across thermal-hydraulics, heat transfer, thermofluids, fluid systems, multiphase flow and computational
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closely related field. Rheology and Fluid Mechanics Expertise: Hands-on experience in complex fluid/suspension rheometry, constitutive modelling, and a strong foundation in particle-laden multiphase flows
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and mathematical analysis of solver technology for multiphase flow simulation in deformable geological porous media. Key challenges and opportunities related to the center applications include: a
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RAP opportunity at National Institute of Standards and Technology NIST Computational Fluid Dynamics & Quantum Algorithms (Multiphase Systems) Location Material Measurement Laboratory, Applied
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to extrusion and compounding Develop insights into interfacial stability, flow instabilities, and morphology control in multiphase and multilayer systems. Support and optimize advanced polymer processing
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diversion, and well completions. Experience with simulation programs such as CMG, TOUGH, MOOSE, ResFrac, or similar tools. Strong understanding of multiphase flow, heat transport, and fractured reservoir
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understanding of multiphase flow, heat transport, and fractured reservoir behavior. Programming experience in Python, MATLAB, or similar scientific computing languages. Excellent data management skills
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. In particular, improved understanding of turbulent, reactive, and multiphase flows together with material sciences and novel manufacturing techniques is the key to improved heat transfer mechanisms and
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capillary pressure and hysteresis in multiphase flow, and the complex phase behavior of multicomponent mixtures described by realistic equations of state. Achieving this goal requires an integrated approach
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the field of fluid mechanics, multiphase flows, thermodynamics and heat exchange, laser measurement techniques, machinery dynamics, tribology and diagnostics of energy production machinery. The thematic