Brahim I.
CAD and finite element analysis for CFD, FSI, static and dynamic problems
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About
More than 20 years of experience in :
1- CAD with SolidWorks and Catia
2- numerical analysis of computational fluid dynamic, structure fluid interaction and static
I speak three languages
Arabic as my mother tongue
French and English
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1- CAD with SolidWorks and Catia
2- numerical analysis of computational fluid dynamic, structure fluid interaction and static
I speak three languages
Arabic as my mother tongue
French and English
Education
- Algeria university Dr . ISSASFA Brahim, Mechanical egineering, Dr 2001 – 2010 Activities and Societies: null
Other experience
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Numerical Simulation and Computer-Aided Design
My research activities focus on the design, modeling, and numerical simulation of mechanical and industrial systems using advanced Computer-Aided Design (CAD) and multiphysics simulation tools.
I am proficient in Computer-Aided Design (CAD) using SolidWorks, which enables me to develop parametric 3D models, mechanical assemblies, engineering drawings, and design studies for the development of new products and the optimization of existing systems.
In the field of numerical simulation, I use the ANSYS Multiphysics platform to investigate the behavior of engineering structures and physical phenomena under realistic operating conditions. My work includes:
Finite Element Analysis (FEA): static, dynamic, modal, buckling, fatigue, and nonlinear structural analyses.
Computational Fluid Dynamics (CFD): simulation of fluid flow, pressure losses, heat transfer, turbulence, and the optimization of hydraulic and aerodynamic performance.
ANSYS CFX: simulation of complex fluid flows in industrial equipment, heat exchangers, turbomachinery, and cooling systems.
Fluid–Structure Interaction (FSI): coupled analysis of fluid flow and structural deformation to predict the behavior of systems subjected to multiphysics loading conditions.
Thermal Analysis: steady-state and transient thermal simulations, including heat transfer by conduction, convection, and radiation.
Numerical Optimization: enhancement of mechanical, thermal, and hydraulic performance through parametric studies and design optimization.
These competencies enable me to contribute to the development of innovative engineering solutions across a wide range of industrial sectors, including energy, mechanical engineering, industrial processes, manufacturing systems, automotive, aerospace, and transportation. The primary objective of my work is to reduce product development costs, improve equipment reliability, optimize system performance, and minimize the need for expensive experimental testing through advanced multiphysics numerical simulation.
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Joined: January 8, 2025
Last seen: July 20, 2026
Location
Oran, Algeria