3D Model
Supersonic CFD Analysis – Multi-Species Air/Hydrogen Propulsion
external flow field and a hydrogen propulsion plume. The simulation was developed using a compressible density-based solver with the k-ω SST turbulence model, selected to improve near-wall flow prediction
Service
I will perform CFD analysis using ANSYS Fluent
designer, I can help you obtain accurate simulation results with clear engineering interpretation.
•Internal Flow Analysis
•External Flow Analysis
•Airflow Simulation
•Heat Transfer Analysis
•Natural Convection
Designer
drtejendrap
CFD Engineer | ANSYS Fluent | Heat Transfer & Thermo-Structural Analysis
thermal analysis, and thermo-structural analysis. My expertise includes fluid flow, heat transfer, turbulence modelling, thermal management, high-heat-flux components, pressure drop, cooling-channel design
Designer
alpere1
Mechanical Engineer | CFD & Thermal-Fluid Analysis | Parametric 3D Design (SolidWorks)
Proficient in setting up and solving complex numerical simulations, focusing on boundary layer dynamics, turbulence modeling (RANS, LES), conjugate heat transfer, and pressure drop minimization across aerodynamic
Designer
Engr_Zartash
Advanced CFD Engineer | ANSYS Fluent, OpenFOAM, COMSOL, SU2 & MFiX | Multiphysics & R&D Simulation,
Computational Fluid Dynamics (CFD) Engineer and R&D Consultant specializing in advanced numerical simulation, multiphysics modeling, and physics-based engineering analysis. I help researchers, startups, and
Service
I provide CFD analysis for complex internal flow problems, including tanks, mixers, rotating systems
structural assessment
✅ Water/spray impact behavior on internal surfaces
✅ Velocity, pressure and turbulence fields to identify problem areas
✅ Transient flow results for different operating conditions
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Designer
javiere1
Hydraulic Engineer | CFD | ANSYS Fluent & OpenFOAM
comparison of the k–ε and k–ω SST turbulence models against established semi-empirical models. I focus on understanding the engineering problem behind the simulation, rather than simply producing CFD results
3D Model
DrivAer vehicle aerodynamics
aerodynamics of the DrivAer model — the standardized geometry the automotive industry uses to validate simulation methodologies before applying them to a real vehicle, developed by TU Munich with published wind-tunnel
3D Model
Portfolio Summary
DrivAer Vehicle Aerodynamics Full CFD simulation of the DrivAer model (an automotive-industry benchmark geometry) in Simcenter STAR-CCM+, validated against a reference thesis and Audi wind-tunnel data
3D Model
CAD and CAE projects
Services 3D Part Modeling, Surfacing, BIW, Sheet metal & Assembly 2D to 3D conversion, Rendering and Simulation Drafting, Machine and GA Drawings Preparation Product Concept forward Engineering (2) Product Analysis