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Failure of Anisotropic Unstructured Mesh Adaption Based on Multidimensional Residual Minimization

机译:基于多维残差最小化的各向异性非结构化网格自适应失效

摘要

An automated anisotropic unstructured mesh adaptation strategy is proposed, implemented, and assessed for the discretization of viscous flows. The adaption criteria is based upon the minimization of the residual fluctuations of a multidimensional upwind viscous flow solver. For scalar advection, this adaption strategy has been shown to use fewer grid points than gradient based adaption, naturally aligning mesh edges with discontinuities and characteristic lines. The adaption utilizes a compact stencil and is local in scope, with four fundamental operations: point insertion, point deletion, edge swapping, and nodal displacement. Evaluation of the solution-adaptive strategy is performed for a two-dimensional blunt body laminar wind tunnel case at Mach 10. The results demonstrate that the strategy suffers from a lack of robustness, particularly with regard to alignment of the bow shock in the vicinity of the stagnation streamline. In general, constraining the adaption to such a degree as to maintain robustness results in negligible improvement to the solution. Because the present method fails to consistently or significantly improve the flow solution, it is rejected in favor of simple uniform mesh refinement.
机译:针对粘性流的离散化,提出,实施和评估了一种自动各向异性的非结构化网格自适应策略。适应标准是基于多维迎风粘性流解算器的残余波动的最小化。对于标量对流,已表明这种适应策略比基于梯度的适应使用更少的网格点,可以自然地将网格边缘与不连续点和特征线对齐。改编利用紧凑的模板,并且在范围上是局部的,具有四个基本操作:点插入,点删除,边缘交换和节点位移。在10马赫的二维钝体层流风洞案例中,对解决方案自适应策略进行了评估。结果表明,该策略缺乏鲁棒性,特别是在弓弦冲击在附近的对准方面。停滞流线。通常,将适应性限制到保持鲁棒性的程度导致对解决方案的改进可忽略不计。因为本方法不能一致地或显着地改善流动解决方案,所以它被拒绝以利于简单均匀的网格细化。

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