Pankaj Saini
@Pankaj19535Language Breakdown
Lines of code distribution across 8 owned repositories
I-Shaped Developer
I-shapedSpecialist — deep expertise in Python
Collaboration Network
Global Impact visualization
Repos
9
PRs
0
Growth
+18%
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Coding Streak
Contribution activity over the past year
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Top Repositories
Performed static structural analysis to evaluate stress distribution, deformation, and identify critical stress regions of the gate valve. Conducted thermal analysis to study temperature distribution, heat flux, and the impact of thermal gradients on material performance. Executed modal analysis to determine natural frequencies and mode shapes.
Designed and assembled a motorbike model in SolidWorks, comprising multiple components and sub-assemblies for CFD ready geometry. Performed external aerodynamic simulation to analyze flow variables, forceCoeffs and validate overall design and aerodynamic performance.
Designed and modeled a fully functional V6 internal combustion engine assembly in SolidWorks, consisting of 50+ components including the engine block, crankshaft, pistons, connecting rods, and cylinder heads. ◦ Applied advanced CAD techniques such as multi-body part design, lofting, sweeps, and complex mechanical mates to accuratel..........
– Conducted an extensive literature review on ammonia as a carbon-free fuel for gas turbines. – Analyzed major combustion challenges including high ignition temperature, low flame speed, narrow flammability range, NOx emis- sions, ammonia slip, and material compatibility issues.
Simulated buoyancy-driven convection using Navier–Stokes and heat transfer equations under Boussinesq approximation. – Analyzed Rayleigh number effects, showing transition from conduction to convection rolls with enhanced heat transfer. – Highlighted practical relevance in atmospheric flows, ocean currents, and thermal management systems.
Computed 1D/2D energy spectra to confirm the k−5/3 inertial range scaling, verified Parseval’s theorem and analyzed correlations and structure functions Sp(r). – Validated Kolmogorov’s 4/5th law via ESS, extracted anomalous scaling exponents ζp and compared with p/3 prediction to study intermittency effects
– Developed a Python solver to simulate incompressible flow in a lid-driven cavity for various Reynolds numbers (Re = 100-3200).
– Implemented explicit and implicit finite-difference schemes to solve the 1D viscous Burgers’ equation. – Simulated shock wave propagation and studied the effect of Reynolds number (Re = 10, 50)
matplotlib: plotting with Python
Open Source Impact
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