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Unstructured Mesh Discretizations and Solvers for Computational Aerodynamics

机译:用于计算空气动力学的非结构化网格分离子和求解器

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An overview of current unstructured mesh discretization and solution techniques is given. Cell-centered versus vertex-centered discretizations are discussed, as well as issues of grid alignment with flow features, higher-order reconstruction, and viscous term formulation. With regards to solution techniques, implicit and multigrid methods are discussed, as well as efficient implementation on massively parallel computer hardware. Sample calculations are used to illustrate the importance of grid resolution and issues in solution accuracy. The examples are taken mostly from transonic flow calculations, and are used to argue that unstructured mesh technology has reached a level of maturity on a par with block-structured or overset mesh methods in this area, although important outstanding issues remain for other application areas such as high-speed flows.
机译:给出了当前非结构化网格分离的概述和解决方案技术。讨论了以细胞为中心的与顶点为中心的离散化,以及与流特征,高阶重建和粘性术语制剂的网格对齐问题。关于解决方案技术,讨论了隐式和多重资源方法,以及在大规模并行计算机硬件上有效实现。使用样本计算来说明网格分辨率的重要性和解决方案准确性的问题。这些例子主要来自跨跨越流量计算,并且用于争论非结构化网格技术在该区域中具有块结构或监视网格方法的一个成熟度,尽管其他应用领域仍然存在重要的出色问题随着高速流动。

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