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) processes within the EIC PATHFINDER project PREDICT by unifying detailed physical models - light transport, surface reaction kinetics, and multiphase reactive flows - into a single CFD framework. The goal is
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will focus on diffuse interface models based on the Navier–Stokes–Korteweg equations. Activities include the study of droplet and bubble dynamics in multiphase flows. Numerical simulations will be
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Aeronautical Engineering or equivalent qualification The candidate must possess proven experience in performing Direct Numerical Simulations (DNS) of multiphase flows, in the development of codes on high
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experimental fluid mechanics, turbulence, multiphase flows and advanced instrumentation Specific Requirements Thesis work mainly at LEGI, 5 days/week with hours that may be modified depending on measurement
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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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multiphase systems, particularly with the use of advanced numerical methods applied to the design and optimisation of solar installations. Thermochemical energy conversion and storage (solar fuels, redox
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: Numerical and experimental study of liquid-gas multiphase flows with particles Where to apply Website https://appsrecerca.urv.cat/cgi-bin/programes/application/inici.cgi?conv=2025PM… Requirements Research
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are selected Start of contract: As soon as possible. Location: UM6P, Benguerir Type of Contract: CDD. Where to apply Website https://www.timeshighereducation.com/unijobs/listing/404333/acer-coe-post-doc-i
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., Mechanical or Chemical Engineering), with documented knowledge within liquid fuel combustion and advanced CFD modelling of turbulent reacting multiphase flows. The candidate is also expected to effectively
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-ion battery electrode formulations with suitable properties for downstream dry battery electrode (DBE) process. This will require the understanding of how to formulate a multiphase powder mixture