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Mixed Element Type Unstructured Grid Generation for Viscous Flow Applications

机译:用于粘性流应用的混合元素类型非结构化网格生成

摘要

A procedure is presented for efficient generation of high-quality unstructured grids suitable for CFD simulation of high Reynolds number viscous flow fields. Layers of anisotropic elements are generated by advancing along prescribed normals from solid boundaries. The points are generated such that either pentahedral or tetrahedral elements with an implied connectivity can be be directly recovered. As points are generated they are temporarily attached to a volume triangulation of the boundary points. This triangulation allows efficient local search algorithms to be used when checking merging layers, The existing advancing-front/local-reconnection procedure is used to generate isotropic elements outside of the anisotropic region. Results are presented for a variety of applications. The results demonstrate that high-quality anisotropic unstructured grids can be efficiently and consistently generated for complex configurations.
机译:提出了一种有效生成高质量非结构化网格的程序,该网格适合于高雷诺数粘性流场的CFD模拟。各向异性元素层是通过从实体边界沿指定法线前进而生成的。生成这些点,以便可以直接恢复具有隐含连接性的五面体或四面体元素。在生成点时,它们会临时附加到边界点的体积三角剖分中。这种三角剖分允许在检查合并层时使用有效的局部搜索算法。现有的前移/局部重新连接过程用于在各向异性区域之外生成各向同性元素。给出了针对各种应用的结果。结果表明,对于复杂的构造,可以高效且一致地生成高质量的各向异性非结构化网格。

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