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首页> 外文期刊>International Journal of Thermal Sciences >Lattice Boltzmann simulation of natural convection dominated melting in a rectangular cavity filled with porous media
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Lattice Boltzmann simulation of natural convection dominated melting in a rectangular cavity filled with porous media

机译:充满多孔介质的矩形腔中自然对流主导熔化的格子Boltzmann模拟

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A thermal lattice Boltzmann model is developed for the melting with natural convection in porous media at the representative elementary volume scale. An evolution equation of the temperature distribution function is constructed through selecting the equilibrium distribution function and non-linear source term properly. Simulations of melting with natural convection in a cavity with and without a porous matrix are performed using the present model. Numerical results show good agreement with previous analytical, experimental and numerical solutions. In addition, the analysis of the melting process over a wider range of dimensionless parameters indicates that for conditions of high Darcy number and high porosity the effect of natural convection on the melting becomes stronger, and the Rayleigh number based on porous media (Ra_m) proposed in the previous studies may not be appropriate to correlate the average hot wall Nusselt number independently. The present model is also suitable for simulating freezing and solidification in porous media without modification.
机译:建立了热晶格玻尔兹曼模型,用于以代表性的基本体积尺度在多孔介质中自然对流熔融。通过适当选择平衡分布函数和非线性源项,构造温度分布函数的演化方程。使用本模型对在具有和不具有多孔基体的型腔中自然对流熔化进行模拟。数值结果表明与以前的分析,实验和数值解决方案吻合良好。此外,对大范围无因次参数的熔化过程的分析表明,对于高达西数和高孔隙率的条件,自然对流对熔化的影响变得更强,并且提出了基于多孔介质的瑞利数(Ra_m)在先前的研究中,将独立的热壁努塞尔数独立关联可能不适合。本模型也适用于模拟多孔介质中的冻结和凝固而无需修改。

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