🚀 CFD enthusiast |
🧪 Passionate about Computational Fluid Dynamics (CFD), simulations & design optimization.
💻 Tools: ANSYS Fluent · OpenFOAM · MATLAB · C++ · SolidWorks · FEA
Objective: Simulate transient wake patterns and analyze aerodynamic force fluctuations using FFT.
Highlights: 2D URANS, force monitors (Cl/Cd), vortex visualization, spectral analysis.
Objective: Investigate shock structures and drag behavior at different Mach numbers.
Highlights: Mach contour visualization, shock wave formation, drag coefficient tracking, high-speed FFT.
Objective: Compare cooling performance of air (2 m/s) and water (1 m/s) flows over a heated panel using CFD. Highlights: Turbulent water flow simulation (Re ≈ 56,000) in 0.05 m pipe under ∼800 W heat flux, temperature distribution, heat transfer efficiency analysis with ANSYS Fluent.
Objective: Analyze steady-state heat transfer from a heated wall to 2D air domain. Highlights: Wall heat flux behavior, total heat transfer rate, simulating 330 K heated wall affecting 300 K incoming air, supporting renewable energy system optimization.
To contribute to advanced aerospace simulations, high-speed aerodynamics, and fluid-structure interaction research, while optimizing renewable energy sources through computational fluid dynamics, specializing in high-speed flow analysis and enhancing efficiency in wind and solar energy systems.
- 🌬 CFD: ANSYS Fluent
- 🔥 Thermal Analysis: ANSYS Steady/Transient Heat Transfer
- 🛠 Structural: ANSYS Mechanical (FEA), ANSYS APDL
- 🧩 CAD & Design: AutoCAD, CATIA, SolidWorks
- 🔄 Simulation Tools: FluidSIM
- 📊 Post-processing: Excel
- 💻 Programming: MATLAB, C++