dxdadao

dxdadao

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MISTRAL

Experimental research code for 3D Navier-Stokes equation using the method of artificial compressibility and finite differences

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2D-flow-in-backwardstep-laminar

CFD methodology for analysis of laminar flow in a channel with backward facing step.

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post2drad

post-processing for developing 2D channel flow. Second order fully staggered

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incompact3d

During my PhD, I was using Incompact3d (http://www.incompact3d.com/) to perform DNS (Direct Numerical Simulation) of the turbulent channel flow with (conjugate) heat transfer.

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DNS-for-Channel-Flow-Re-180

Finite Difference Method. Runge-Kutta 3rd order. Central differences.

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Channel_flow

FEM method applied at a channel flow

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ChannelFlow

C++ DNS Code for channel flow

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CHAPSim1.0

An incompressible Direct Numerical Simulation (DNS) code for pipe and channel flow and heat transfer

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Channel_DNS

DNS Solver for Channel Flow

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NonNewtonian

Numerical study of Non-Newtonian fluid flow between two parallel plates in microchannel

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Navier_stroke_solver

C++ Implementation Of Navier stroke solver for 3D-Channel body-force driven flow with periodic boundary condition

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channelRANS

RANS Channel flow solver for OpenFOAM, with mass flow rate based pressure gradient correction

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Lid-driven-cavity

Lid-driven cavity flow of an incompressible, Newtonian fluid using Clawpack

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CFM

INCOMPRESSIBLE FLOW IN LID DRIVEN CAVITY FLOW USING SEMI IMPICIT METHOD FOR PRESSURE CORRECTION

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3D-Lid-Driven-Cavity_-SIMPLE-Algorithm

3D - incompressible - Newtonian - steady - isothermal flow in lid driven cavity using SMPLE Algorithm

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flow_sims

2D Lid Driven Cavity Flow Simulations: FEM vs FDM vs SIMPLE

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short_LDC_fortran

Short 3D lid-driven cavity flow solver written in Fortran

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Development-of-Navier-Stokes-code-by-projection-method

This repository contains a Fortran implementation of a 2D flow using the projection method, with Finite Volume Method (FVM) approach. The code solves Navier Stokes equations in a 2D lid driven cavity, with computation of the rotational as well.

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3D-Numerical-Analysis-of-Rotating-Micro-channels

Undergrad Final Year Project. 3D CFD analysis of fluid flow in rotating microchannels.

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Microchannel-Designs

Workflow and Scripts for Running Simulations of 2D Microchannels with Heat and Mass Transfer

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ChannelFlow-with-heat

Modeling channel flow with heat input from walls of the channel.

License:MITStargazers:1Issues:0Issues:0

3D-RANS-channel-flow

A 3D RANS solver using the Poisson pressure correction method and the Prandtl's mixing length model. All MATLAB subroutines are available in ./RANS_3D_codes.

Language:MATLABLicense:MITStargazers:4Issues:0Issues:0

GPU-Channel-Flow

Recreated code from the CFDPython module by Prof. Lorena Barba for a 2D Channel flow solver and implement GPU acceleration for the Pressure Poisson Function.

Language:Jupyter NotebookLicense:MITStargazers:3Issues:0Issues:0

channel-f90

Direct Numerical Simulation of an incompressible turbulent channel flow (F90)

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Lattice-Boltzmann-Simulation

2D Simulation of flow through a channel, past a moving cylinder, using the Lattice Boltzmann CFD method.

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RANS_Channel

Solves RANS-equations for fully developed turbulent channel flow with variable properties

Language:Jupyter NotebookStargazers:37Issues:0Issues:0

HEAT3D

The simulation of three-dimensional heat conduction equations is used to learn and understand such problems, including two types of boundary conditions that can be used: neuman and Dirichlet boundary

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2d-heat-transfer-conduction-simulation

Project developed for the discipline of Heat and Mass Transfer based on the transient simulation of a 2D surface with specific initial conditional parameters of temperature. The discretization of the equations are done by the use of the finite element method.

Language:PythonLicense:MITStargazers:12Issues:0Issues:0

1D-Heat-Conduction-Equation-Solver

This project focuses on the evaluation of 4 different numerical schemes / methods based on the Finite Difference (FD) approach in order to compute the solution of the 1D Heat Conduction Equation with specified BCs and ICs, using C++ Object Oriented Programming (OOP).

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LBM_Codes

FORTRAN codes for different fluid-flow and heat transfer problems using classical LBM

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