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under laminar conditions. Finally, TiO2 production in turbulent conditions will be studied using the different optical diagnostics developed in the laboratory (laser-induced incandescence and elastic
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preferably) Strong skills in turbulence modelling, CFD mesh generation and use of parallel computing Have relevant experience in working with aerosols and droplets Proficient in handling large data sets and
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program AMHYABLE. In particular, the work at CNRS will focus on the characterization of the laminar and turbulent flame speeds for NH3 / H2 / N2 / air mixtures, with various fuel blends. The spherical
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-Saclay/CentraleSupélec http://em2c.centralesupelec.fr/ ), through its high-level academic research on energy and combustion and its applied studies in partnership with the most prominent companies
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CIEMAT (Centro de Investigaciones Energéticas, Medioambientales y Tecnológicas) | Spain | 3 months ago
the physics of plasma turbulence and its impact on a future reactor performance. You will be working in an international environment to develop cutting-edge instruments, deploy recently created AI tools
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of Antwerp. See also: https://remotesensing.vito.be/news/sspirit-tackling-plastic-pollution The main task of the KU Leuven PhD project will be the further development and validation of a two versatile
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of computational power over the last decade has enabled scale-resolving simulations (SRS) of turbulent flows at an unprecedented resolution. In combination with high-performance computing (HPC), parallel
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dependent educational benefits Life insurance coverage Employee discounts programs For detailed information on benefits and eligibility, please visit: http://uhr.rutgers.edu/benefits/benefits-overview
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Position Summary The Center for High Order Plasma Turbulence Modeling for Z-Pinch (HighZ: https://highz-fic.github.io ), a Department of Energy (DOE), Predictive Science Academic Alliance Program
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candidates with research interests from any area of coastal physical oceanography, including a broad set of processes and varying scales: turbulence and mixing, meso- and submesoscale dynamics, boundary layers