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in computational research Comprehensive understanding of quantum mechanics and electronic structure theory is critical Experience with CFD (e.g., the use of OpenFoam or ALDFoam) and microkinetic
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) or reactive transport simulation codes (e.g., OpenFOAM, StarCCM+, PFlotran, TOUGHREACT, PHT3D etc.). Good programming skills in C/C++, Fortran, or Python. Knowledge and experience with HPCs. The work will be
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) simulations, which will be instrumental to the overarching goal of the project. The main focus of the simulations will be on two-phase flows with complex topologies in electrolyzer manifolds. OpenFoam is the
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track record, potential or demonstrated, of international standing strong mathematical and computational skills, and experience with open source CFD software packages such as OpenFOAM or WaLBerla
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or semester interns. Your profile PhD in Materials Science, Mechanical Engineering, Manufacturing Technology or similar fields Experienced in CFD and FEM simulations using tools such as OpenFOAM (preferably
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mass transfer, and process engineering Extensive experience in modeling and simulation and ideally knowledge of CFD software (e.g., Ansys Fluent, OpenFOAM, COMSOL) Very good programming skills
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conversion systems (e.g., gas turbine combustors, detonation engines, reciprocating engines, etc.) using CFD solvers (e.g., CONVERGE, Nek5000/NekRS, OpenFOAM, ANSYS Fluent, etc.) on large-scale HPC platforms
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, energy engineering or a closely related discipline. Experience in modeling & simulation of three-dimensional multiphase turbulent reacting flow applications using 3-D CFD codes (e.g., CONVERGE, OpenFOAM
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, OpenFOAM, etc.). The ability to demonstrate collaborative skills, including the ability to work well with other divisions, laboratories, and universities. Skilled in communication at all levels
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discipline. Experience with modeling three-dimensional multiphase turbulent reacting flow applications using CFD codes (e.g., CONVERGE, OpenFOAM, etc.). Experience with multi-dimensional CFD internal