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characterization, and flow measurements; validate models and identify operating regimes. Develop numerical simulation, data-analysis, and machine-learning/automated rule-extraction workflows that integrate
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advanced numerical and experimental methods for simulating fluids and multi-physics including mesh-based methods, spectral methods, and particle-based methods applied to multiphase flows and civil
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computational tools (mainly in-house LBM code) for multiphysics simulations involving: heat transfer multiphase flows sorption kinetics The overall objective is to improve the understanding and optimization
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, multiphase flows, fluidised beds, mathematics Ability to work both independently and in a team Fluency in English (level C1), no knowledge of German require What We Offer: On the basis of full-time employment
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research area, including, but not limited to, interfacial transport phenomena, waste thermal energy recovery, multiphase flows and phase-change heat transfer, reacting flows in extreme environments
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at: www.ftf.lth.se , www.nano.lu.se , https://kaw.wallenberg.org/en/research/semiconductor-bandgap-key-future-green-electronics, https://c3nit.se/ Subject description The purpose of this project is to develop a data
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the Kempe Foundation in the subject of Fluid Mechanics with application to hydraulic turbines. Subject description Fluid Mechanics comprises the study of flow in porous media, multiphase flow and rheology
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and mathematical analysis of solver technology for multiphase flow simulation in deformable geological porous media. Key challenges and opportunities related to the center applications include: a
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mechanics, reactive flows, as well as solid mechanics plays a central role. In particular, improved understanding of turbulent, reactive, and multiphase flows together with material sciences and novel
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capillary pressure and hysteresis in multiphase flow, and the complex phase behavior of multicomponent mixtures described by realistic equations of state. Achieving this goal requires an integrated approach