Description: 格子Boltzmann方法
格子Boltzmann方法是为了保留格子气自动机方法的优点,克服其缺点而发展起来的方法。
特别是1992年,钱跃弘、陈十一等的开创性工作(提出LBGK模型方法),使该方法广泛地应用到计算流体力学(单相流、多相流、多孔介质流、热对流、磁流体、反应-扩散等)。
-lattice Boltzmann method lattice Boltzmann method is to retain the lattice gas automata the advantages and overcome its shortcomings and develop ways. In particular, in 1992, Qian Yue Wong Chan 11 the pioneering work (proposed Computational Model), the approach to the wider application of computational fluid dynamics (single-phase flow, multiphase flow, flow in porous media, thermal convection, MHD, the reaction - diffusion, etc.). Platform: |
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Author:张翟 |
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Description: 格子Boltzmann方法
格子Boltzmann方法是为了保留格子气自动机方法的优点,克服其缺点而发展起来的方法。
特别是1992年,钱跃弘、陈十一等的开创性工作(提出LBGK模型方法),使该方法广泛地应用到计算流体力学(单相流、多相流、多孔介质流、热对流、磁流体、反应-扩散等)。
这是“格子模型”的并行处理,在LINUX下调试通过-lattice Boltzmann method lattice Boltzmann method is to retain the lattice gas automata the advantages and overcome its shortcomings and develop ways. In particular, in 1992, Qian Yue Wong Chan 11 the pioneering work (proposed Computational Model), the approach to the wider application of computational fluid dynamics (single-phase flow, multiphase flow, flow in porous media, thermal convection, MHD, the reaction - diffusion, etc.). This is the "lattice model" of parallel processing, the adoption of Linux Debugging Platform: |
Size: 17955 |
Author:张翟 |
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Description: 格子Boltzmann方法
格子Boltzmann方法是为了保留格子气自动机方法的优点,克服其缺点而发展起来的方法。
特别是1992年,钱跃弘、陈十一等的开创性工作(提出LBGK模型方法),使该方法广泛地应用到计算流体力学(单相流、多相流、多孔介质流、热对流、磁流体、反应-扩散等)。
-lattice Boltzmann method lattice Boltzmann method is to retain the lattice gas automata the advantages and overcome its shortcomings and develop ways. In particular, in 1992, Qian Yue Wong Chan 11 the pioneering work (proposed Computational Model), the approach to the wider application of computational fluid dynamics (single-phase flow, multiphase flow, flow in porous media, thermal convection, MHD, the reaction- diffusion, etc.). Platform: |
Size: 480256 |
Author:张翟 |
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Description: 格子Boltzmann方法
格子Boltzmann方法是为了保留格子气自动机方法的优点,克服其缺点而发展起来的方法。
特别是1992年,钱跃弘、陈十一等的开创性工作(提出LBGK模型方法),使该方法广泛地应用到计算流体力学(单相流、多相流、多孔介质流、热对流、磁流体、反应-扩散等)。
这是“格子模型”的并行处理,在LINUX下调试通过-lattice Boltzmann method lattice Boltzmann method is to retain the lattice gas automata the advantages and overcome its shortcomings and develop ways. In particular, in 1992, Qian Yue Wong Chan 11 the pioneering work (proposed Computational Model), the approach to the wider application of computational fluid dynamics (single-phase flow, multiphase flow, flow in porous media, thermal convection, MHD, the reaction- diffusion, etc.). This is the "lattice model" of parallel processing, the adoption of Linux Debugging Platform: |
Size: 17408 |
Author:张翟 |
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Description: % A 2D homogeneous convection-diffusion case (u=exp(-ex*deta*x-ex*deta*y) with a square with
% all Dirichlet boundary, note that reaction coefficient is not zero
% by indirect BKM - A 2D homogeneous convection-diffusion case (u = exp (-ex* deta* x-ex* deta* y) with a square with all Dirichlet boundary, note that reaction coefficient is not zero by indirect BKM Platform: |
Size: 2048 |
Author:项羽 |
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Description: 对二维的反应扩散方程使作欧拉差分的并行计算-Of two-dimensional reaction-diffusion equations for the Euler differential so that the parallel computing Platform: |
Size: 5120 |
Author:张国勇 |
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Description: 对于扩散反应方程的格子boltzmann仿真实验
我们要达到解决反应项的问题-Diffusion-reaction equation for the lattice boltzmann simulation experiment we want to solve the problem of response Platform: |
Size: 1024 |
Author:nwsd |
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Description: 反应扩散问题长期在研究领域中c++去实现,
现在我们用MATLAB也可以-Reaction-diffusion problem in the area of research in long-term c++ to achieve, and now we can use MATLAB Platform: |
Size: 1024 |
Author:nwsd |
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Description: 反应扩散问题长期在研究领域中c++去实现,
现在我们用MATLAB也可以-Reaction-diffusion problem in the area of research in long-term c++ to achieve, and now we can use MATLAB Platform: |
Size: 1024 |
Author:nwsd |
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Description: 反应扩散方程中布鲁塞尔子的模拟~反应扩散方程中布鲁塞尔子的模拟~-Reaction-diffusion equations in Brussels analog sub ~ reaction-diffusion equations in the sub-analog ~ Brussels Platform: |
Size: 1024 |
Author:纪昀 |
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