搜索资源列表
ISAAC
- A compressible Euler/Navier-Stokes code written in F77. Developed mainly to test turbulence models. Worth a look if you want a code with advanced turbulence modeling (it has several two equation models, explicit ARSM models and full differential RSM
jameson.rar
- 基于jameson格式的欧拉方程求解程序,fortran语言的,网格文件是非结构网格,注释少了点,不过对学习cfd的朋友来说,看懂是没有问题的,Jameson format based on the Euler equation solver, fortran language, the non-grid grid paper, notes少了点, but a friend of the CFD study is to understand there is no problem
sola_vof
- SOLA-VOF program solving Navier-Stokes equation with free surface by volume of fluid method
free-boundary-problems
- 可以使用它计算free surface flow The program is a 2D solver for the incompressible, transient Navier-StokesK[ equations including the temperature equation and free boundary problems-The program is a 2D solver for the incompressible, transient Navier-Sto
NS_Solver_Staggered_Pressure
- 一个求解Navier-Stokes不可压缩流动的代码。用Matlab编制。-It s a source code for Navier-Stokes equation in incompressilbe flow, which is written in Matlab.
comsol14
- 下面我们将给出一些基于Galerkin有限元法的微型泵模拟结果,模拟过程在商业软件COMSOL Multiphysics 3.2中实现。数值求解采用压力修正算法——SIMPLE,它首先假设一个压力场,然后通过求解不可压缩流动的Navier-Stokes方程得到速度场。这些速度不需要满足Possion型连续方程,所以对压力场的修正也带来速度场的修正,最终满足质量守恒。求解速度场的同时计算电势场方程。这会得到Lorentz力,然后将其反馈回N-S方程并作为体积力处理。连续耦合Lorentz力和速度场
McAdams_ChurchillBernstein
- In convective heat transfer, the Churchill–Bernstein equation is used to estimate the surface averaged Nusselt number for a cylinder in cross flow at various velocities.[1] The need for the equation arises from the inability to solve the Navier–Stoke
lidDriven-D2Q9-stokes
- 用LBM方法模拟D2Q9模型下的顶盖驱动方腔问题,以stokes方程为控制方程-With lid driven cavity problem LBM SIMULATION D2Q9 model to stokes equation equation
simple-stokes
- Simple算法,半隐式计算Stokes方程控制的方腔问题,*量方程-Simple arithmetic, square cavity in half- Stokes equations to calculate the implicit control, no energy equation
2dc
- 包括直角坐标中用有限容积法生成的二维对流-扩散方程的求解程序;直角坐标系中同位网格上二维Navier-Stokes方程求解程序;及计算结果的后处理程序;-Including Cartesian coordinates using finite volume method to generate two-dimensional convection- diffusion equation solver Cartesian coordinate system on the same bit two
EFG2
- 无网格法在数值计算中不需要生成网格,而是按照一些任意分布的坐标点构造插值函数离散控制方程,就可方便地模拟各种复杂形状的流场。该法大致可分成两类:一类是以Lagrange方法为基础的粒子法(Particle method),如光滑粒子流体动力学(Smoothed particle hydrodynamics,简称SPH)法,和在其基础上发展的运动粒子半隐式(Moving-particle semi-implicit,简称MPS)法等;另一类是以Euler方法为基础的无格子法(Gridless me
