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A robust and contact preserving flux splitting scheme for compressible flows

机译:用于可压缩流的稳健和接触保存的磁通分裂方案

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Low-dissipation shock-capturing methods usually suffer from various forms of shock instabilities, such as the notorious carbuncle phenomenon, in simulations of hypersonic flows. Many strategies for tackling the shock instability of flux difference splitting schemes, such as HLLC and Roe schemes, have been proposed while little work has been undertaken on the shock instability of flux splitting schemes. In this paper, we are concerned with the shock instability of a convection-pressure flux splitting scheme. By means of a linearized perturbation analysis, it shows that all of the perturbations in the streamwise direction are damped, while the perturbations of density and shear velocity in the transverse direction are undamped. Due to the special symmetry, the two-dimensional Sedov blast wave problem is studied to demonstrate the relation between the transverse flux and shock instability. Based on the theoretical analyses, a shock stable flux splitting scheme is presented through introducing additional viscosities of entropy wave and shear wave to damp out all perturbations in the transverse direction. For restoring the contact surface and shear layer, a pressure-based function depending on the shock-wave strength is defined to control the amount and location of additional viscosities. Numerical results of several challenging test problems demonstrate that the new scheme has greatly improved the robustness without undermining the accuracy. (C) 2020 Elsevier B.V. All rights reserved.
机译:低耗散冲击捕获方法通常遭受各种形式的休克不稳定性,例如臭名昭​​着的痈现象,在超声波流动的模拟中。已经提出了许多解决磁通差分裂方案的休克不稳定性的许多策略,例如HLLC和ROE方案,而在助焊剂分裂方案的休克不稳定性上进行了很少的工作。在本文中,我们涉及对流压力通量分裂方案的冲击不稳定。通过线性化的扰动分析,它表明,流动方向上的所有扰动都被阻尼,而横向的密度和剪切速度的扰动是透明的。由于特殊的对称性,研究了二维SEDOV BLAST波问题,以证明横向通量和休克不稳定之间的关系。基于理论分析,通过引入熵波和剪切波的附加粘度来提出冲击稳定的助焊剂分离方案,以抑制横向的所有扰动。为了恢复接触表面和剪切层,定义了根据冲击波强度的基于压力的功能,以控制附加粘度的量和位置。几个具有挑战性的测试问题的数值结果表明,新方案大大提高了鲁棒性而不破坏准确性。 (c)2020 Elsevier B.v.保留所有权利。

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