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Field
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Computational Fluid Dynamics (CFD) has become indispensable for aerospace design, many important problems—including high-fidelity flow simulations, uncertainty quantification, and multidisciplinary optimization
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the research team; contributing to the optimization of the investigated enhancement geometries; disseminating research outcomes through publications in leading international journals and presentations
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heat transfer processes Use of advanced numerical methods (CFD, LBM, hybrid models) Utilization of high-performance computing (HPC, GPU) Analysis and validation of numerical results Optimization
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such as additive manufacturing or etching Usage of commercial CFD software Generative design Adsorption processes Heat exchangers Coding in languages such as Python and C++ Numerical optimization. Selection
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Dynamics (CFD) simulations to optimize the design and performance of floating breakwaters. Develop finite element models for stability assessment, structural integrity, and dynamic response of floating
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are searching for a Division Head for the Computational Fluid Dynamics (CFD) Division in the Fluid Dynamics and Acoustics Office (FDAO) at the Applied Research Laboratory (ARL) at Penn State. The CFD Division
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real-world impact across three of Sweden’s flagship HPC codes: GROMACS (one of the world's most widely used molecular dynamics packages), Neko (a highly scalable CFD framework nominated for the ACM
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Technology, and the PhD student will be positioned in the Esbjerg Energy section. The position is part of the internally funded research project SURGE: Speed-optimized USVs for Robust Guidance and Offshore
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on the research and development of devices to treat heart and pulmonary failure. Duties include (but are not limited to): Designing and optimizing rotary blood pump components, including impellers/rotors, volutes
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and assist with optimizing project management frameworks, standardizing operating procedures, and scaling approaches that are broadly applicable across research project portfolios. Support the