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Two and three dimensional multi-moment finite volume solver for incompressible Navier-Stokes equations on unstructured grids with arbitrary quadrilateral and hexahedral elements

机译:具有任意四边形和六面体单元的非结构网格上不可压缩的Navier-Stokes方程的二维和二维多维有限体积求解器

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摘要

This paper presents an extension of the robust and accurate finite volume method (FVM), so-called VPM (Volume integrated average and Point value based Multi-moment) method, to structured and unstructured grids with arbitrary quadrilateral and hexahedral mesh elements. The VPM method treats two different discretized moments of the physical fields, i.e. the volume integrated average (VIA) and the point values (PV) at the vertices of each cell, as the computational variables, which distinguishes it from conventional FVM. Given the local degrees of freedom in terms of VIA and PVs, we have properly designed the interpolation polynomials of reconstruction for quadrilateral and hexahedral mesh elements, which are then used to build a numerical formulation for incompressible viscous fluid dynamics. Numerical results of benchmark tests in both 2 and 3 dimensions are presented to verify the accuracy and robustness of the proposed method, which shows significant improvement in comparison with conventional FVM. The proposed formulation provides a practical solver that is well-balanced between numerical accuracy and algorithmic complexity.
机译:本文提出了将稳健而精确的有限体积方法(FVM)(即所谓的VPM(基于体积积分平均和基于点值的多矩)方法)扩展到具有任意四边形和六面体网格元素的结构化和非结构化网格的方法。 VPM方法将物理场的两个不同离散矩(即每个单元的顶点处的体积积分平均值(VIA)和点值(PV))视为计算变量,这使其与常规FVM区别开来。给定根据VIA和PV的局部自由度,我们已针对四边形和六面体网格元素正确设计了重构的插值多项​​式,然后将其用于建立不可压缩粘性流体动力学的数值公式。提出了在2维和3维上的基准测试的数值结果,以验证所提出方法的准确性和鲁棒性,与常规FVM相比,它显示出显着的改进。所提出的公式提供了一种实用的求解器,该求解器在数值精度和算法复杂度之间取得了很好的平衡。

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