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An effective lattice Boltzmann flux solver on arbitrarily unstructured meshes

机译:任意非结构化网格上的有效格式Boltzmann助理求解器

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摘要

The recently proposed lattice Boltzmann flux solver (LBFS) is a new approach for the simulation of incompressible flow problems. It applies the finite volume method (FVM) to discretize the governing equations, and the flux at the cell interface is evaluated by local reconstruction of lattice Boltzmann solution from macroscopic flow variables at cell centers. In the previous application of the LBFS, the structured meshes have been commonly employed, which may cause inconvenience for problems with complex geometries. In this paper, the LBFS is extended to arbitrarily unstructured meshes for effective simulation of incompressible flows. Two test cases, the lid-driven flow in a triangular cavity and flow around a circular cylinder, are carried out for validation. The obtained results are compared with the data available in the literature. Good agreement has been achieved, which demonstrates the effectiveness and reliability of the LBFS in simulating flows on arbitrarily unstructured meshes.
机译:最近提出的格子Boltzmann助剂求解器(LBFS)是一种模拟不可压缩流动问题的新方法。它应用有限体积法(FVM)来离散化控度方程,并且通过在细胞中心的宏观流量变量从麦克基玻璃液溶液的局部重建来评估电池界面的通量。在先前的LBF应用中,已经采用了结构化网格,这可能会对复杂几何形状的问题造成不便。在本文中,LBFS延伸到任意非结构化网格,用于有效模拟不可压缩流动。两个测试用例,进行三角形腔中的盖子流动并围绕圆筒流动,用于验证。将获得的结果与文献中可用的数据进行比较。已经实现了良好的一致性,这表明了LBF在任意非结构化网格上模拟流动的有效性和可靠性。

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