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(OpenFOAM) for thermal storage systems and related components. You will generate steady-state surrogate models based on CFD and FEA data to support design optimisation and develop reduced-order dynamic models
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-current flume with advanced instrumentation and numerical simulations using open-source tools such as OpenFOAM or REEF3D. Your duties: Participation in a research project on local scour around pile
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software such as OpenFoam. Investigate the system numerically by conducting a thorough parametric study of the toxin-removal performance of the newly designed dialyser. Conduct a thorough comparative
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Actuators, using the two main existing methodologies. Carry out the experimental implementation of plasma actuators in wind turbines. Where to apply Website https://seuelectronica.upc.edu/en/procedures
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The project aims at the development of a self-contained finite volume (OpenFOAM-based) solver for the solidification of multiphase flows with a free surface, including radiative heat transfer through semi
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long-term research and innovation activities within the group. Where to apply Website https://bit.ly/3HDLRTw Requirements Research FieldEngineeringEducation LevelPhD or equivalent Specific Requirements
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), with the aim of improving the efficiency of scientific simulations in applications such as cardiac electrophysiology (MICROCARD: https://microcard.eu/index-en.html), fluid flow (NekRS, OpenFOAM), and
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must have skills and previous experience in non-Newtonian fluids mechanics, OpenFOAM, and programming languages like C++ and MatLab. 8. Recruitment method: In accordance with articles 26