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A characteristic space-time conservation element and solution element method for conservation laws II. Multidimensional extension

机译:守恒律的特征性时空守恒元和解元法II。多维扩展

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The characteristic space-time conservation element and solution element (CE/SE) schemes proposed by Shen et al. (2015) [15] are straightforward extended to multidimensional schemes on 2D rectangular meshes which strictly follow the space-time conservation law. The schemes for solving both scalar conservation laws and compressible Euler equations with shock waves are developed. They are accurate and robust with CFL widely ranging from 0 to nearly 1. In Euler solvers, the frequently-used Harten, Lax and van Leer (HLL) Riemann solver, contact discontinuity restoring HLLC Riemann solver and Roe Riemann solver are employed to calculate the upwind fluxes as examples. When standard grid-aligned Riemann solvers are employed, the carbuncle phenomena are significantly suppressed when comparing with conventional upwind schemes. If rotated Riemann solvers are employed, nearly carbuncle-free results are obtained. Several well understood numerical examples are carried out to demonstrate that the 2D characteristic CE/SE schemes can simultaneously capture shocks and details of complex flow structures very well. (C) 2015 Elsevier Inc. All rights reserved.
机译:Shen等人提出的特征时空守恒元素和解元素(CE / SE)方案。 (2015)[15]直接扩展到严格遵循时空守恒定律的二维矩形网格上的多维方案。提出了用冲击波求解标量守恒定律和可压缩欧拉方程的方案。它们的精确度和鲁棒性在CFL范围从0到接近1的范围内。在Euler求解器中,使用了常用的Harten,Lax和van Leer(HLL)Riemann求解器,接触不连续性恢复HLLC Riemann求解器和Roe Riemann求解器来计算以上风向为例。当使用标准网格对齐的Riemann求解器时,与常规迎风方案相比,carb象现象得到了显着抑制。如果使用旋转的黎曼求解器,则可获得几乎无carb的结果。进行了几个众所周知的数值示例,以证明2D特征CE / SE方案可以很好地同时捕获冲击和复杂流结构的细节。 (C)2015 Elsevier Inc.保留所有权利。

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