À propos de Mbaye
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Capacité professionnelle complète
Expériences
- RENAULTCFD Engineer – Thermal Comfort & HVACAUTOMOBILEjanvier 2024 - septembre 2025 (1 an et 8 mois)Guyancourt, FranceRole Summary:CFD Engineer specialized in aeraulics, thermal comfort, and HVAC systems. Responsible for full CFD study cycles, from requirement definition to modeling, validation, optimization, and result presentation. Collaborates closely with project teams, internal experts, and software editor (Siemens) to ensure robust, industrializable methodologies.Key Achievements:- Led the transition of CFD methodologies from Ansys Fluent to STAR-CCM+, ensuring reliable and automated processes for vehicle HVAC duct design.- Developed complete CFD models for ventilation, feet heating, and windshield defrost systems, including automation of boundary conditions and post-processing, reducing analysis time and improving result clarity.- Conducted correlation studies between simulation and physical tests, enhancing model confidence and supporting project decision-making.- Authored methodological deliverables, templates, and HPC procedures to standardize CFD practices across teams.- Provided training and mentorship for new CFD users and supervised an intern on external aerodynamics with active flow control.- Collaborated with Siemens software experts to optimize model performance and validate numerical approaches.
- SEGULAR&D Fluid-Structure Interaction (FSI)ENERGIEmars 2023 - août 2023 (5 mois)Nantes, FranceRole Summary:Intern in Research & Innovation focused on the numerical study of hydrodynamic behavior of flexible composite structures for an energy-generating hydrodynamic pump. Responsible for modeling, simulation, and analysis of fluid-structure interactions to optimize performance and understand resonance effects.Key Achievements:- Conducted numerical simulations of composite flexible structures under hydrodynamic loading using FINE/Marine coupled with deformation modes from Abaqus.- Performed modal analysis of composite structures, assessing the influence of anisotropy and natural vibration modes on lift and performance.- Identified resonance phenomena affecting hydrodynamic efficiency and structural behavior.- Designed and executed parametric studies and numerical experiments to evaluate performance across different configurations of composite.- Analyzed fluid flow hydrodynamic response to inform design improvements.- Applied knowledge of composite material behavior in marine environments to optimize structural and hydrodynamic performance.
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Formations
- Cycle Ingénieur en Mécanique - EnergétiqueINSA Hauts-de-France2023Aerodynamics, Fluid Mechanics, Turbulence, Thermodynamics, Numerical Methods, heat transfer