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Author: Maged |
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Description: Lattice Boltzmann LBE模型在二维多孔介质流体渗流中的应用,基于geometry: D2Q9, model: BGK-Simple, yet simplistic, Lattice Boltzmann (LB) MATLAB implementation. D2H9, BGK, omega = 1, laminar flow in a 2D channel used as benchmark. Requires Image Processing Toolbox.
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Size: 6144 |
Author: Lemon |
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Description: 2D Navier-Stokes方程,自己编程。圆柱绕流例子,是matlab语言-2D Navier-Stokes equations, their own programming. Flow around a cylinder example is the matlab language
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Size: 81920 |
Author: 薛永飞 |
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Description: 2D Navier-Stokes方程,编程的数据主程序。用MATLAB语言编写-2D Navier-Stokes equations, programming the data the main program. With the MATLAB language
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Size: 4096 |
Author: 薛永飞 |
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Size: 118784 |
Author: jie |
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Description: this package allows to solve to incompressible Navier-Stokes equations with a fast method
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Size: 3072 |
Author: mouniiit_e |
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Description: Matlab 3D turbulent High level languages analysis of quasi-segregated Navier-Stokes solvers and
its application to 3D reactive flows
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Size: 331776 |
Author: pinanong |
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Description: 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.
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Size: 6144 |
Author: zhangxi |
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Description: 求解navier stokes equation的matlab代码-navier stokes
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Size: 2048 |
Author: yangfan zhao |
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Description: 安德森《计算流体力学及其应用》第十章流过平板的超声速流动 10.4节 纳维—斯托克斯方程计算程序的组织。自己编写的matlab源代码。-Anderson the computational fluid mechanics and its application "chapter 10 through the flat of supersonic flow section 10.4- navier stokes equation calculation procedure of the organization. His writing of matlab source code.
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Size: 5120 |
Author: 向阳 |
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Description: A compact and fast Matlab code solving the incompressible
Navier-Stokes equations on rectangular domains,A compact and fast Matlab code solving the incompressible
Navier-Stokes equations on rectangular domains
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Size: 168960 |
Author: tarek |
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Description: 计算流体力学
Navier2d has now been used to simulate a variety of flows. Based on some requests, I have complied the following brief list.-Navier2d is a set of MATLAB functions designed to simulate the motion of
incompressible fluids via numerical solutions of the 2D, unsteady Navier-Stokes (NS) equations.
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Size: 1630208 |
Author: 奥运 |
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Description:
An interactive GUI showing particles flowing in a liquid field described by Navier-Stokes equations for incompressible fluids. Click and drag with the mouse to add forces to the liquid. Uses Jos Stam s unconditionally stable FFT-based algorithm implemented in MATLAB Code for real-time performance.
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Size: 902144 |
Author: Akshay |
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Description: A MATLAB code which solves navier-stokes in Cartesian coordinates with worticity and stream function aproach
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Size: 1024 |
Author: Mehdi |
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Description: 板壳理论解析解matlab实例,包括莱维方法、纳维方法-The analytical solution of shell theory MATLAB examples, including Levi method, Navier method
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Size: 2048 |
Author: YinKate |
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Description: steady state navier stokes
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Size: 22528 |
Author: psz
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Description: navier stokes with simple algorithm
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Size: 53248 |
Author: psz
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Description: In computational fluid dynamics (CFD), SIMPLE algorithm is a widely used numerical procedure to solve the Navier-Stokes equations. SIMPLE is an acronym for Semi-Implicit Method for Pressure Linked Equations.
The SIMPLE algorithm was developed by Prof. Brian Spalding and his student Suhas Patankar at Imperial College, London in the early 1970s. Since then it has been extensively used by many researchers to solve different kinds of fluid flow and heat transfer problems.[1][2]
Many popular books on computational fluid dynamics discuss the SIMPLE algorithm in detail.[3][4] A modified variant is the SIMPLER algorithm (SIMPLE Revised), that was introduced by Patankar in 1979.[5]
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Size: 1024 |
Author: SASASA89 |
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Description: In computational fluid dynamics (CFD), SIMPLE algorithm is a widely used numerical procedure to solve the Navier-Stokes equations. SIMPLE is an acronym for Semi-Implicit Method for Pressure Linked Equations.
The SIMPLE algorithm was developed by Prof. Brian Spalding and his student Suhas Patankar at Imperial College, London in the early 1970s. Since then it has been extensively used by many researchers to solve different kinds of fluid flow and heat transfer problems.[1][2]
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Size: 6144 |
Author: SASASA89 |
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