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specialist in Lattice Boltzmann Method), Alexis Giauque (associate professor at ECL and specialist in thermodynamics), and Emmanuel Leveque (CNRS research director and specialist in turbulence). The doctoral
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schools in the world. For more details, please view https://www.ntu.edu.sg/mae/research . We are looking for a Research Fellow. The role will focus on helping to build thermal-flow engineering and
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the Eulerian approach and the Lattice-Boltzmann Method (LBM) with Lagrangian bubble tracking, in collaboration with TUHH Improvement of closure laws for the two-fluid model based on novel experiments and LBM
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the candidate will combine three levels of fidelity (first-principles based tool / RANS / Lattice Boltzmann Method) to design centrifugal turbomachines answering the needs of the project REVCO2. Numerical
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multiphase flows Your tasks Develop and extend the in-house GPU-accelerated multiphase Lattice Boltzmann (LBM) code for DNS-grade boiling multiphase flow related to nuclear reactor operation, including bubble
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to sign the contract. More information is available on: https://www.dges.gov.pt/pt/pagina/reconhecimento . Workplan and the objectives to achieve: This work aims to develop a numerical approach based on
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simulations on the Aurora supercomputer, using AMReX (https://amrex-codes.github.io/amrex/ ) and the lattice Boltzmann method (LBM). The candidate will develop flow/geometry-aware refinement strategies that go
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innovative tools combining high-fidelity simulations based on a Lattice Boltzmann Method (LBM) CFD code with advanced data assimilation techniques, notably the Ensemble Kalman Filter (EnKF). By integrating
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include Boltzmann Generators [1 ,2 ], Surrogate-model Assisted Molecular Dynamics [3 ], and Implicit Transfer Operators [4 ,5 ]. The Postdoc will lead both the conceptual development in close collaboration
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(M/F) will work within the LUPM. The research fellow (M/F) recruited will be eligible for training and support when taking up their duties. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre