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simulation methodologies in OpenFOAM for predicting thermal runaway initiation and propagation at the cell- and module level. Particular emphasis will be placed on leveraging modern heterogeneous computing
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methods Computational or process modeling using tools such as Python, MATLAB, Aspen, COMSOL, Fluent, or OpenFOAM Experience with high performance computing environments Experience working in a classified
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for application to nuclear, or similarly complex, thermal energy systems. Experience with open-source CFD codes such as OpenFOAM or Nek5000, and/or commercial CFD codes such as STAR-CCM+, ANSYS or COMSOL. Knowledge
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languages and computational fluid dynamics software packages such as OpenFOAM and COMSOL Multiphysics. Expertise in reservoir engineering and phase-field modeling is also desirable. Interested candidates
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, or water resources in general. The applicant must have prior experience with computational modeling and flume experiments. Experience with CFD software such as OpenFOAM is preferred, but not required. To be
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a strong background in Biochemistry, Mathematics, and/or Mechanics (experimental and computational methods (use of OpenFOAM and/or COMSOL)) are welcome to apply. Experience in blood and animal