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Field
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, finite-size particles transported by turbulent flows display complex dynamics that remain only partially understood. When particles possess inertia, they do not follow fluid trajectories and interact with
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mechanics, inert, anisothermal and reactive fluids, to effects related to complementary physical properties of thermal, combustion and detonation. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre
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–Stokes operator linearised about the turbulent jet mean flow. The tool, designed to account for the decorrelating effects of turbulence, will first be validated on axisymmetric jets and subsequently
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analysis" led by Theresa Lange . The group investigates the interplay between randomness and convection in fluid flows. For this work, we are looking for a PhD Student. You will work on rigorous analysis
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. Objectives: Characterize the hydrodynamics of the gas phase in bioreactors at different scales (20Là15m3) CFD simulation of gas/liquid flow using the Eulerian approach (two-fluid model) Comparison between
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investigate: - Mineralogical transformations—particularly clay mineral alterations—resulting from fluid flow, - Textural relationships between host units, veins, cements, inherited/newly formed minerals
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on the flow in soap films and will help us better understand how surface viscosity affects foam drainage, bubble coalescence, and the aging of fluid interfaces. Where to apply Website https://emploi.cnrs.fr
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registered at the MIMME Doctoral School (https://mimme.ed.univ-poitiers.fr/ ). Institut Pprime is a dedicated research unit (UPR) of the CNRS. Its scientific activities span a broad spectrum ranging from
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FieldEngineeringEducation LevelMaster Degree or equivalent Skills/Qualifications Candidate profile We are seeking for an Engineering or Master graduates with a strong background in fluid mechanics and numerical flow
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of objects, but current techniques are limited to small particles (micrometer to millimeter scale). In optics, the slowing down of light ("slow light") in structured media significantly amplifies radiation