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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A node-pair finite element/volume mesh adaptation technique for compressible flows based on a hierarchical approach
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A node-pair finite element/volume mesh adaptation technique for compressible flows based on a hierarchical approach

机译:基于分层方法的可压缩流节点对有限元/体网格自适应技术

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摘要

A grid adaptation technique for two-dimensional unstructured grids of triangles and quadrilaterals is presented. The error estimation procedure is formulated in terms of a node pair-based data structure that allows for a unified description of the finite element and finite volume schemes. The adaptation algorithm is based on a strategy of hierarchical corrections, where a suitable number of intermediate adapted grids are generated and successively corrected by employing a simple node insertion technique at the midpoint of the element edges. Coarsening of the grid is obtained in an implicit fashion by avoiding the insertion of new nodes during the correction phase. The adaptation history, from the initial to the current grid, including all intermediate grids, is stored and updated through the whole process. No intermediate grid is therefore required to be stored explicitly. The adapted grid is anisotropic, thanks to the adoption of both regular triangular and quadrilateral elements with high aspect ratio that are gathered in, for example, boundary layer or wake regions. Numerical experiments of steady compressible flows, including both inviscid and viscous flows, are presented to support the suitability of the adaptation technique.
机译:提出了一种用于三角形和四边形的二维非结构化网格的网格自适应技术。误差估计程序是根据基于节点对的数据结构制定的,该结构允许对有限元和有限体积方案进行统一描述。自适应算法基于分层校正的策略,其中通过在元素边缘的中点采用简单的节点插入技术来生成并连续校正适当数量的中间自适应网格。通过避免在校正阶段插入新节点,以隐式方式获得了网格的粗化。从整个初始网格到当前网格(包括所有中间网格)的适应历史记录都将在整个过程中进行存储和更新。因此,不需要明确存储中间网格。由于采用了高纵横比的规则三角形和四边形元素,这些网格是各向异性的,这些元素聚集在例如边界层或尾流区域。为了支持自适应技术的适用性,提出了包括可粘流体和不粘流体在内的稳定可压缩流的数值实验。

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