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methods to decode the physics, chemistry, and biology of complex multiphase bioreactors. Working within PROSYS, you will have the freedom to design rigorous simulation campaigns, develop reduced‑order
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facilities, we advance understanding of turbulent incompressible, compressible, and multiphase flows through coordinated research. About the research project This research project develops high-efficiency
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, characterization of microstructure and properties (MULTIPHASE)”, agreement no. UMO-2023/51/D/ST11/00440, financed by the National Science Centre. The candidate will be responsible for: - synthesis and
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at the Division covers turbulent flow (both compressible and incompressible), multiphase flows, aero-acoustics and turbomachines. Our tools include both computations and experiments. The research covers a wide
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, fluid 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
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structure preserving Finite Element methods for multiphase flows with applications in X-ray tomography. Qualification requirements Requirements are: A PhD, or an international degree deemed equivalent to a
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, improved understanding of turbulent, reactive, and multiphase flows together with material sciences and novel manufacturing techniques is the key to improved heat transfer mechanisms and more efficient use
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expertise in numerical modeling of multiphase or reactive flows (CFD experience required). Proficiency with at least one CFD framework (e.g., OpenFOAM, ANSYS Fluent). Solid understanding of heat and mass
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position in our group on experimental realization and diagnostics of multiphase flow problems. In our project we aim to develop reliable diagnostic tools to help designing efficient removal/mixing systems
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CO2 and CH4 across variable PVT conditions including multiphase mixing and flow. The ability to conduct high-temperature and high-pressure experimentation in both batch and flow configurations