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A Coupled Lattice Boltzmann-Volume Penalization for Flows Past Fixed Solid Obstacles with Local Mesh Refinement

机译:流经固定实体障碍物的局部网格细化的耦合格子Boltzmann-体积罚分法

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A coupled Lattice Boltzmann-Volume Penalization (LBM-VP) with local mesh refinement is presented to simulate flows past obstacles in this article. Based on the finite-difference LBM, the local mesh refinement is incorporated into the LBM to improve computing efficiency. The volume penalization method is introduced into the LBM by an external forcing term. In the LBM-VP method, the processes of interpolating velocities on the boundaries points and distributing the force density to the Eulerian points near the boundaries are unnecessary. Performing the LBM-VP on a certain point, only the variables of this point are needed, which means the whole procedure can be conducted parallelly. As a consequence, the whole computing efficiency can be improved. To verify the presented method, flows past a single circular cylinder, a pair of cylinders in tandem arrangement, and a NACA-0012 are investigated. A good agreement between the present results and the data in the previous literatures is achieved, which demonstrates the accuracy and effectiveness of the present method to solve the flows past obstacle problems.
机译:本文提出了具有局部网格细化的耦合格子Boltzmann-体积罚分法(LBM-VP),以模拟经过障碍物的流动。基于有限差分LBM,将局部网格细化合并到LBM中以提高计算效率。体积罚分法是通过外部强迫项引入到LBM中的。在LBM-VP方法中,不需要在边界点上进行速度插值并将力密度分布到边界附近的欧拉点的过程。在某个点上执行LBM-VP,仅需要该点的变量,这意味着整个过程可以并行进行。结果,可以提高整体计算效率。为了验证所提出的方法,研究了流过单个圆柱体,一对串联的圆柱体和NACA-0012的流动。目前的结果与先前文献中的数据之间取得了很好的一致性,这证明了本方法解决流过障碍问题的准确性和有效性。

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