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Parallel Two-Dimensional Unstructured Anisotropic Delaunay Mesh Generation of Complex Domains for Aerospace Applications

机译:航空领域复杂域的并行二维非结构化各向异性Delaunay网格生成

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In this paper, we present a bottom-up approach to parallel anisotropic mesh generation by building a mesh generator from principles. Applications focusing on high-lift design or dynamic stall, or numerical methods and modeling test cases still focus on the two-dimensions. Our push-button parallel mesh generation approach can generate high-fidelity unstructured meshes with anisotropic boundary layers for use in the computational fluid dynamics field. The anisotropy requirement adds a level of complexity to a parallel meshing algorithm by making computation depend on the local alignment of elements, which in turn is dictated by geometric boundaries and the density functions. Our experimental results show 70% parallel efficiency over the fastest sequential isotropic mesh generator on 256 distributed memory nodes.
机译:在本文中,我们通过从原理上构建网格生成器,提出了一种自下而上的并行各向异性网格生成方法。侧重于高升力设计或动态失速,数值方法和建模测试用例的应用程序仍侧重于二维。我们的按钮式并行网格生成方法可以生成具有各向异性边界层的高保真非结构化网格,以用于计算流体动力学领域。各向异性要求通过使计算取决于元素的局部对齐而增加了并行网格划分算法的复杂度,而元素的局部对齐又由几何边界和密度函数决定。我们的实验结果表明,在256个分布式存储节点上,最快的顺序各向同性网格生成器具有70%的并行效率。

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