A motivational bot made using Microsoft's Bot Framework
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Updated
Jun 7, 2017 - C#
Computational Fluid Dynamics (CFD) is a specialized area within fluid mechanics that employs numerical methods and algorithms to simulate the behavior of fluids. It enables engineers and scientists to model and analyze complex flow phenomena, such as air flow around an aircraft wing, water currents in rivers, or heat transfer in industrial equipment. CFD tools provide detailed insights into fluid behavior under various conditions, allowing for optimization of designs, prediction of performance, and troubleshooting of issues in many fields including aerospace, automotive, energy, and environmental engineering. By solving the governing equations of fluid motion (Navier-Stokes equations), CFD can predict velocity, pressure, temperature, and other important variables throughout the domain of interest.
A motivational bot made using Microsoft's Bot Framework
Collection of OpenFOAM solvers and cases
A multilayer shallow water equations solver using the Lattice Boltzmann method as part of a Masters research project.
A computational fluid dynamics (CFD) application implementing multiple fluid simulation methods for the Imcompressible Navier-Stokes equations with real-time visualization and real time analysis tools I made during holidays.
libFastMesh - Optimized Finite Volume Computational Aeroacoustics (CAA) Code
template of an openfoam project with coded solver using SBM model
Python code for Tridiagonal Matrix Algorithm or Thomas Algorithm with n unknowns
True Error-Based Mesh Adaptation Strategy for the Advection-Diffusion Equation
The source code for Finite volume Explicit STructured 3Dimensional (FEST-3D) solver.
Docker container for OpenFOAM - a free, open-source computational fluid dynamics software - based on Debian.
This is the analysis of the Tesla Cybertruck standard configuration aerodynamic properties on OpenFOAM 12 made by POLIMI students. The analysis will also include modified configurations of the vehicle.
Lightweight CFD engine in C implementing Navier–Stokes for 2D incompressible flow. Includes a full lid-driven cavity solver, SCGS method, several convection/diffusion schemes, and a JSON-configurable runtime architecture.
Finite Volume Solver for 1D advection-diffusion using a Point Implicit Method written as part of a class project for "Fundamentals of CFD" course at ETH Zurich
Neural surrogate network replacing CFD simulations for cardiac flow prediction — 92.4% accuracy, 90× computational speedup.
Capital.com REST API client & CLI — trade CFDs from the command line. Built with Bun/TypeScript. Zero dependencies.
Computational modelling of wind flow and wind-induced loads in the Atmospheric Boundary Layer via Dynamic Terrain inflow generation and Large Eddy Simulations
Python and Paraview postprocessing tools for use with NREL's SOWFA