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A preconditioned lattice Boltzmann flux solver for steady flows on unstructured hexahedral grids

机译:一个预处理的晶格Boltzmann助焊剂求解器,用于非结构化的六面栅格网格上的稳定流动

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The lattice Boltzmann flux solver (LBFS), first introduced by Shu et al. (2014) on structured meshes, allows fluid flow problems to be solved on unstructured meshes discretised by the finite volume method. The solver calculates the macroscopic fluxes at the cell interfaces from a local reconstruction of the lattice Boltzmann solution. In this paper the LBFS is extended to three-dimensional unstructured hexahedral meshes and a preconditioned lattice Boltzmann flux solver (PLBFS) is presented. The PLBFS involves applying the preconditioning technique proposed by Guo (2004) to the LBFS and is achieved by modifying the equilibrium distribution function used to calculate the macroscopic fluxes at the cell interface. When the PLBFS is applied to steady flow problems, it is shown that convergence is significantly accelerated and the accuracy of predictions with unstructured grids is greatly improved when compared to the LBFS. This paper also introduces a strategy for choosing the optimal value of preconditioning factor with unstructured hexahedral meshes. (C) 2020 Elsevier Ltd. All rights reserved.
机译:格子Boltzmann助焊剂求解器(LBFS),首先由Shu等人引入。 (2014)在结构型网状物上,允许在由有限体积法离散的非结构化网格上解决流体流动问题。求解器从晶格Boltzmann溶液的局部重建计算电池界面处的宏观助熔剂。在本文中,LBF延伸到三维非结构化六面啮合网格,并提出了预先说明的晶格玻璃板磁通求解器(PLBF)。 PLBFS涉及将GUO(2004)提出的预处理技术应用于LBF,并且通过修改用于计算电池界面处的宏观通量的平衡分布函数来实现。当PLBFS应用于稳定的流量问题时,显示与LBF相比,将收敛性显着加速,并且具有非结构化网格的预测的准确性大大提高。本文还介绍了选择具有非结构化六面向网格的预处理因素的最佳价值的策略。 (c)2020 elestvier有限公司保留所有权利。

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