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Lattice Boltzmann method based on Dual-MRT model for three-dimensional natural convection and entropy generation in CuO-water nanofluid filled cuboid enclosure included with discrete active walls

机译:基于Dual-MRT模型的Lattice Boltzmann方法在带有离散活动壁的CuO-水纳米流体填充的长方体罩中三维自然对流和熵产生

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In the present study, the three-dimensional natural convection and entropy generation in a cuboid enclosure included with various discrete active walls is analyzed using lattice Boltzmann method. The enclosure is filled with CuO-water nanofluid. To predict thermo-physical properties, dynamic viscosity and thermal conductivity, of CuO-water nanofluid, the KKL model is applied to consider the effect of Brownian motion on nanofluid properties. In lattice Boltzmann simulation, two different MRT models are used to solve the problem. The D3Q7-MRT model is used to solve the temperature filed, and the D3Q19 is employed to solve the fluid flow of natural convection within the enclosure. The influences of different Rayleigh numbers (10(3) Ra 10(6)) and solid volume fractions (0 phi 0.04) and four different arrangements of discrete active walls on the fluid flow, heat transfer, total entropy generation, local heat transfer irreversibility and local fluid friction irreversibility are presented comprehensively. (C) 2017 Elsevier Ltd. All rights reseived.
机译:在本研究中,使用格子Boltzmann方法分析了包含各种离散的主动壁的长方体罩中的三维自然对流和熵产生。外壳中充满了CuO-水纳米流体。为了预测CuO-水纳米流体的热物理性质,动态粘度和导热系数,使用KKL模型考虑布朗运动对纳米流体性质的影响。在格子Boltzmann仿真中,使用了两种不同的MRT模型来解决该问题。 D3Q7-MRT模型用于求解温度场,而D3Q19用于求解外壳内自然对流的流体流动。不同瑞利数(10(3)

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