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computational fluid dynamics (CFD) and computer-aided design (CAD) software. They should also be prepared to engage in both computational analysis and experimental testing as required. Essential criteria
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in another way. Knowledge of mathematical modeling, building simulation, CFD or measurements is an advantage. You also have a genuine interest in energy issues in general and see this as an important
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experienced by hypersonic vehicles and quantifying the overall uncertainty. The candidate will assume the role of a software developer in the Computational Fluid Dynamics (CFD) and Propulsion Laboratory, a
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for calculations developed with system codes (e.g. TRACE), as well as for new applications that are beginning to emerge with computational fluid dynamics (CFD) codes. Where to apply Website https://www.upv.es
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deployment enabling validation and demonstration of real-world applications. For more details, please view https://www.ntu.edu.sg/erian You will be part of a dynamic research team working on topics relevant
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, Python). Experience with Computational Fluid Dynamics (CFD) simulation software (e.g., Ansys Fluent) and Flight/Astrodynamics Simulation Software (e.g., NASA GMAT, Ansys STK) is considered an asset
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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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in the DTCC Platform, enabling direct use in applications such as wind comfort (CFD), urban heat and solar studies, flood and noise simulations, infrastructure management, and AR/VR visualization. Who
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on the fabrication, assembly, and testing of heat pipe systems Contribution to the development and optimization of manufacturing and integration methods for heat pipe components Numerical simulations (FEM/CFD
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tool that can simulate indoor radon level dynamics and the effect of energy-efficient measures and different mitigation methods, combining the results of Computational Fluid Dynamics (CFD) simulations