À propos de Jeremie
Français
Bilingue ou natif
Anglais
Capacité professionnelle complète
Expériences
- FLUIDIANCEO / FounderINGÉNIERIE MÉCANIQUEmars 2009 - Aujourd'hui (17 ans et 3 mois)Paris, FranceServices de consulting en simulation CFD et développement scientifique:- secteurs BTP, Sécurité & Défense, Industrie,- clients grands comptes : THALES, SAINT-GOBAIN, INGEROP, DGA, AREP, etc.- interventions sur des projets européens,- constitution d'une offre de simulation basée sur des logiciels open-source.Exemples de prestations :- mise au point de modèles de dispersion NRBC (nucléaire, radiologique, biologique et chimique)- mise au point de modèles eulériens de dépôt et de resuspension des aérosols,- simulation atmosphérique urbaine,- étude de ventilation naturelle,- étude de qualité de l'air,- confort thermique des bâtiments,- optimisation de process industriels,- développement d'IHM.Logiciels : Code_Saturne, Openfoam, Salome, FDS, Ansys Fluent, Ansa
- CelSian Glass & Solar B.V.Sales manager FranceEDITION DE LOGICIELSoctobre 2018 - décembre 2021 (3 ans et 2 mois)Eindhoven, NetherlandsProvide know-how for worldwide glass manufacturers to improve their process efficiency.Pre-sale proprietary CFD software models used by customers to optimize their glass melting processes and minimizing costs for end users and the environment.Support furnace operations through process and emission measurements, furnace inspections and laser based sensor technology.
- SAINT-GOBAINR&D engineerINDUSTRIE MATIÈRES PREMIÈRESmars 2002 - mars 2009 (7 ans)93300 Aubervilliers, FranceCFD simulation of glass making process:- float furnaces (flat glass),- U-flame furnaces, forehearth (bottle glass),- unit-melter and electric furnaces (insulation),- coupled simulations between combustion and glass bath.R&D studies, setup of physical and numerical models:- glass melting (raw materials),- combustion (cinetic and equilibrium models),- radiation in semi-transparent media (glass, gas),- electric melting,- optical quality criteria for flat glass (striograms),- rédox state,- energetic improvement of glass furnaces,- reducing pollutant emissions (Nox, CO),- mixing devices. Management of numerical tools for glass furnaces design :- benchmark of simulation software,- capture of users needs, change management- improvement of simulation ressources,- development of a new internal simulation software for glass furnaces,- development of a "cloud" software for quick simulation of glass process,- development of GUI for setup and analysis of CFD simulations,- support and training of users.Technical environment : Celsian's GTM-X, Ansys Fluent (UDF), GS GFM, Gambit, CFX/ICEM, Fieldview, Ensight, Paraview Programming environment : C, C++, Fortran, Python, Scheme
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Formations
- Msc, Applied Mathematics and Fluid Dynamics, Applied Mathematics and Fluid DynamicsPolytech'Paris-UPMC2002Msc, Applied Mathematics and Fluid Dynamics, Applied Mathematics and Fluid Dynamics
- BTEC Higher National Diploma, General Mechanic, Electronic, Industrial designLycée Jules Uhry1994BTEC Higher National Diploma, General Mechanic, Electronic, Industrial design
Certifications
- Agrément Impôt-RechercheMinistère de La Recherche