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Toward Accurate Simulation of Shockwave-Turbulence Interaction on Unstructured Meshes: A Coupling of High-Order FR and LAD Schemes

机译:走向非结构化网格上冲击波-湍流相互作用的精确仿真:高阶FR和LAD方案的耦合

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A high-order flux reconstruction (FR) scheme on unstructured hexahedral grids is coupled with the localized artificial diffusivity (LAD) scheme for aiming at accurate simulation of shock-turbulence interactions. Suitable flux reconstruction procedure is derived for ensuring the global discrete conservation. We then propose a simple and efficient filter for obtaining smooth distribution of the artificial diffusivity on unstructured hexahedral meshes, which is one of the key issues for developing robust LAD method on unstructured meshes. The proposed scheme has favorable properties of sub-cell shock capturing with the length scale of O(h/p) and superior high-order-accuracy preservation for smooth flows. The proposed scheme is tested on typical shock-related problems, including 1D shock tube, 1D shock-entropy wave interaction, 2D steady shock flows, and 2D shock-vortex interaction. The comparisons between the proposed scheme, a conventional finite volume method and the FR scheme with a limiter illustrate the superior performance of the proposed FR-LAD scheme for the simulation of flows involving shocks, acoustic waves, turbulence, and their interaction.
机译:针对非结构化六面体网格的高阶通量重建(FR)方案与局部人工扩散(LAD)方案相结合,旨在精确模拟冲击湍流相互作用。推导了适当的通量重建程序以确保全局离散守恒。然后,我们提出了一种简单有效的滤波器,用于在非结构化六面体网格上获得人工扩散系数的平滑分布,这是在非结构化网格上开发鲁棒LAD方法的关键问题之一。所提出的方案具有长度为O(h / p)的子电池冲击捕获的良好特性,并具有优良的高阶精度保持平稳流动。该方案在典型的与冲击有关的问题上进行了测试,包括一维激波管,一维激波-熵波相互作用,二维稳定冲击流和二维激波-涡旋相互作用。所提出的方案,常规有限体积方法和带有限制器的FR方案之间的比较说明了所提出的FR-LAD方案在模拟冲击,声波,湍流及其相互作用方面的优越性能。

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