Name: Ramakant Gadhewal
Type: User
Company: Newtrace Pvt Ltd
Bio: Ph.D. PEM Fuel Cell Modeling, Chemical Engineering at NIT, Warangal, India
Location: Bengaluru ,India
Blog: https://www.linkedin.com/in/ramakant-gadhewal-34086661/
Ramakant Gadhewal's Projects
Shan and Chen 2D lattice Boltzmann method in C++
Coupled level-set VOF method implementation by Sankar Menon has been adapted for OpenFoam 9
Immersed boundary method empowered by signed distance field, and OpenFOAM.
Repository containing codes for SE207 - Machine Learning in Computational Mechanics
It is described how to simulate secondary current distribution in electrochemical reactors with a multiregion approach (solve solid and fluid phases) with the help of OpenFOAM, the developed solver multiregionPotentialFoam and the BC regionCoupleSolidFluid. It shows how to pre-process, run and post-process a basic case involving in a 2D domain
Optimal Shape Design in External Flow with OpenFOAM
Simple Heat Transfer PDE
Massively-parallelised Navier-Stokes solver with detailed documentation and validations
Electromagnetic Simulation Using the FDTD Method with Python
Simulation and modeling of natural processes by University of Geneva
Serial LBM implementation for small single phase scenarios.
Simulation Model developed for 3YP
This repository includes two SOFC solvers in both cell- and pore-scale, which are developed in open source computational fluid dynamics (CFD) platform OpenFOAM.
Solid-state additive manufacturing with OpenFOAM
A collection of OpenFOAM solvers used in simulating blood coagulation
In this project, I along with 3 group members solved the particle in a box problem computationally as part of U of T's DEEP Computational Physics Challenge.
This Repo Contains Series of Functions Coded in Matlab for System of Spare Linear Equations Ax=B solution, Specially those arise in Computational Fluid Mechanics(CFD)
C++ FEM library | user-friendly | multi-physics | hp-adaptive | HPC
Single Particle States - Quantum Mechanics in 2D
Numerical implementation of natural convection in square cavity
VIP cheatsheets for Stanford's CME 102 Ordinary Differential Equations for Engineers
code written for Statistical Mechanics: Algorithms and Computations course by Coursera
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Stock Market Prediction using Machine Learning
Calculating optical cross sections from an arbitrary scatterer using surface integral equation.
Three different surface film models are implemented in OpenFOAM in tandem with dynamic structure LES turbulence model