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首页> 外文期刊>Journal of Computational Physics >A multi-moment finite volume method for incompressible Navier–Stokes equations on unstructured grids: Volume-average/point-value formulation
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A multi-moment finite volume method for incompressible Navier–Stokes equations on unstructured grids: Volume-average/point-value formulation

机译:非结构网格上不可压缩Navier–Stokes方程的多矩有限体积方法:体积平均/点值公式

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摘要

A robust and accurate finite volume method (FVM) is proposed for incompressible viscous fluid dynamics on triangular and tetrahedral unstructured grids. Differentlyfrom conventional FVM where the volume integrated average (VIA) value is the only compu-tational variable, the present formulation treats both VIA and the point value (PV) as the computational variables which are updated separately at each time step. The VIA is computed from a finite volume scheme of flux form, and is thus numerically conservative. The PV is updated from the differential form of the governing equation that does not have to be conservative but can be solved in a very efficient way. Including PV as the additional variable enables us to make higher-order reconstructions over compact mesh stencil to improve the accuracy, and moreover, the resulting numerical model is more robust for unstructured grids. We present the numerical formulations in both two and three dimensions on triangular and tetrahedral mesh elements. Numerical results of several benchmark tests are also presented to verify the proposed numerical method as an accurate and robust solver for incompressible flows on unstructured grids.
机译:针对三角和四面体非结构化网格上不可压缩的粘性流体动力学,提出了一种鲁棒且精确的有限体积方法(FVM)。与常规的FVM不同,传统的FVM的体积积分平均值(VIA)值是唯一的计算变量,本公式将VIA和点值(PV)视为计算变量,它们在每个时间步分别更新。 VIA是根据磁通形式的有限体积方案计算得出的,因此在数值上是保守的。 PV由控制方程的微分形式更新,该方程不必太保守,但可以通过非常有效的方式求解。将PV作为附加变量包括在内,使我们能够在紧凑的网格模具上进行更高阶的重构,以提高精度,而且,所得的数值模型对于非结构化网格更健壮。我们在三角形和四面体网格单元上以二维和三维形式呈现数值公式。还提供了一些基准测试的数值结果,以验证所提出的数值方法是非结构化网格上不可压缩流的精确且鲁棒的求解器。

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