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Adaptive Unstructured Triangular Mesh Generation and Flow Solvers for the Navier-Stokes Equations at High Reynolds Number

机译:高雷诺数下Navier-Stokes方程的自适应非结构​​化三角形网格生成和流动求解器

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A method for generating high-quality unstructured triangular grids for high Reynolds number Navier-Stokes calculations about complex geometries is described. Careful attention is paid in the mesh generation process to resolving efficiently the disparate length scales which arise in these flows. First the surface mesh is constructed in a way which ensures that the geometry is faithfully represented. The volume mesh generation then proceeds in two phases thus allowing the viscous and inviscid regions of the flow to be meshed optimally. A solution-adaptive remeshing procedure which allows the mesh to adapt itself to flow features is also described. The procedure for tracking wakes and refinement criteria appropriate for shock detection are described.
机译:描述了一种用于为有关复杂几何形状的高雷诺数Navier-Stokes计算生成高质量非结构化三角网格的方法。在网格生成过程中要格外注意,以有效地解决这些流中出现的不同长度尺度。首先,以确保真实表示几何形状的方式构造表面网格。然后,体积网格的生成分两个阶段进行,因此可以使流的粘稠区域和不粘稠区域进行最佳网格化。还描述了一种解决方案自适应的重新网格化过程,该过程允许网格自身适应流动特征。描述了跟踪尾波的过程和适合于震动检测的细化标准。

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