Navier-Stokes-Simulations
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Updated
Apr 11, 2024 - Jupyter Notebook
Navier-Stokes-Simulations
2D airflow simulation to model the spread of COVID-19 in indoor spaces
This notebook means to use CFD algorithms to compute the parameters of an NACA airfoil with Spalart-Almarras for unsteady compressible viscous turbulent flow
2D Fluid Collision Simulation
Grad Course (2020-2021), CE 200B – Environmental Fluid Mechanics II
backward_step, a FreeFem++ code which solves the backward step benchmark problem for Navier Stokes flow.
Numerical solution to the Convection-Diffusion Equations in Fluid Mechanics. Application to solve a diagonal flow and to solve the Smith-Hutton problem.
High performance computing coursework: A parallel numerical code for solving a 2d smoothed particle hydrodynamic formulation of the N-S equations.
Navier-Stokes oil dynamics in a rectangular 3D tank, physics-informed neural network approach
Navier Stokes equation is solved by using Chorin's projection method
a example for smoothed particle hydordynamics
Cavity Simulator
First topic of the advanced-lab-course in summer term 2020. We want to simulate and visualize a cavity flow via the famous Navier-Stokes equations using the finite difference method.
template of an openfoam project with coded solver and boundary condition
Pseudo-spectral simulation of fully-periodic two-dimensional incompressible Navier-Stokes flows in Julia, via FFTW.jl and DifferentialEquations.jl
Shallow water simulator in a rectangular tub that uses the Navier Stokes Equations to create a simulation.
individual convolutional autoencoders (iCAEs) for low-dimensional parametrization
WebGL implementation of Navier-Stokes equations
A set of in-progress Jupyter notebooks that seek to ease computations of compressible flow and provide visualizations of potential flow and simple solutions to the Navier-Stokes equations.
Fluid Simulation Application demonstrates simple 2D fluid mechanics implemented in c++ and OpenGL. Code is based on the Navier-Stokes equation
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