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-scale utilization of combustion technologies based on partially-cracked ammonia through both fundamental chemical kinetic and CFD research and application to an actual burner. ICARE is a CNRS unit
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applications. To achieve this, you will employ computational fluid dynamics (CFD) and machine learning (ML) to investigate degradation mechanisms under various operating conditions and develop strategies
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of next-generation lightweight electric vehicles. The work will focus mainly on the development of numerical models (CFD) for the analysis and understanding of the behavior of the solution to be developed
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and mass transfer and fluid dynamics for thermal systems. Where to apply Website https://seuelectronica.upc.edu/en/procedures/call-for-recruitment-of-ptgas-staf… Requirements Research FieldEngineering
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Informatics (Numerical Analysis; simulation, optimization and modelling tools; Computational Fluid Dynamics (CFD)), Product and Processes Engineering (Space Engineering), Condensed Matter Physics (Fluid
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publications (45%); - Experience in CFD simulation and finite element software for the analysis of building components; energy and thermal simulation; knowledge of digital technologies for geometric definition
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, optimization and modelling tools; Computational Fluid Dynamics (CFD)), Product and Processes Engineering (Space Engineering), Condensed Matter Physics (Fluid mechanics and dynamics) and Applied Physics
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proficient programming skills. Essential experience includes developing Discrete Element Models (DEM) or hybrid models (e.g., DEM-CFD, DEM-SPH). A proven research record through publications and code
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We are looking for a highly motivated candidate to pursue a PhD programme titled "CFD-informed finite element analysis for thermal control in wire-arc directed energy deposition." This research
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of Mechanical Engineering). This environment facilitates the exchange of research knowledge with colleagues also working in CFD and ML, both in applied and fundamental areas. The candidate will develop