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首页> 外文期刊>TAO: Terrastrial, atmospheric, and oceanic sciences >An Automatic Method for Complete Triangular Mesh Conversion into Quadrilateral Mesh for Multiple Domain Geometry
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An Automatic Method for Complete Triangular Mesh Conversion into Quadrilateral Mesh for Multiple Domain Geometry

机译:完整的三角网格转换为多域几何的四边形网格的自动方法

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摘要

This research developed an automatic two-dimensional finite element meshing system to resolve practical engineering problems in the fields of geology, hydrology, and water resources. This system first used the Delaunay triangulation method to create reasonable-density triangular mesh and then converted it into quadrilateral mesh by combining proper pairs of adjacent triangles. A series of combination patterns aiming at three cases were established. The effect of the number of boundary edges on the subsequent meshing procedures were studied and summarized. For the geometry with multiple domains an adjustment method is proposed to completely eliminate the residual triangles during quadrilateral meshing through adjusting the number of boundary edges in each loop to be even. A special boundary loop identification method is proposed for priority treatment. Corresponding treatment methods aimed at three different situations are established for common boundary loops. For a certain boundary loop with an odd number of boundary edges, the appropriate edge for new point insertion is determined by the position properties and relative density errors. Practical applications confirm that the method proposed in this paper could successfully implement the full conversion from the triangular mesh to the quadrilateral mesh.
机译:这项研究开发了一种自动二维有限元网格划分系统,以解决地质,水文和水资源领域的实际工程问题。该系统首先使用Delaunay三角剖分方法来创建合理密度的三角形网格,然后通过组合适当的相邻三角形对将其转换为四边形网格。建立了针对三种情况的一系列组合模式。研究并总结了边界边缘数量对后续网格划分程序的影响。对于具有多个区域的几何形状,提出了一种调整方法,通过将每个环中的边界边数调整为偶数来完全消除四边形啮合期间的残留三角形。提出了一种特殊的边界环识别方法,用于优先处理。针对共同的边界回路建立了针对三种不同情况的相应处理方法。对于具有奇数个边界边的某个边界环,用于新点插入的适当边由位置属性和相对密度误差确定。实际应用证实了本文提出的方法可以成功实现从三角网格到四边形网格的完全转换。

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