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首页> 外文期刊>Matematika >A Three-Dimension Double-Population Thermal Lattice BGK Model for Simulation of Natural Convection Heat Transfer in a Cube
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A Three-Dimension Double-Population Thermal Lattice BGK Model for Simulation of Natural Convection Heat Transfer in a Cube

机译:用于多维数据集中自然对流传热的三维双种群热格子BGK模型

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In this paper, a double-population thermal lattice Boltzmann was applied to solve three dimensional, incompressible thermal fluid flow problem. The simplest lattice BGK D3Q6 model was proposed to determine the temperature field while D3Q15 or D3Q19 for the density and velocity Felds. The simulation of natural convection in a cubic cavity with Prandtl number 0.71 and Rayleigh number ranging from $10^3$ to $10^5$ were carried out and compared with the published results in literature. It was observed that the combination of D3Q6 and D3Q19 gave better numerical stability and accuracy compared to D3Q6 with D3Q15 for the simulation at high Rayliegh number.Keywords: Double population; lattice Boltzmann; distribution function; natural convection.
机译:在本文中,采用双种群热格子Boltzmann来解决三维不可压缩的热流体流动问题。提出了最简单的晶格BGK D3Q6模型来确定温度场,而D3Q15或D3Q19用于确定密度场和速度场。进行了Prandtl数为0.71,Rayleigh数为$ 10 ^ 3 $到$ 10 ^ 5 $的立方腔中自然对流的模拟,并将其与文献中的结果进行了比较。在高Rayliegh数下,与D3Q6和D3Q15相比,D3Q6和D3Q19的组合具有更好的数值稳定性和准确性。格子玻尔兹曼分配功能;自然对流。

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