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Hierarchical template-based quadrilateral mesh generation

机译:基于分层模板的四边形网格生成

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In the context of any domain decomposition meshing strategy, this paper describes a quadrilateral mesh generation algorithm ideally suited for subdomains in which transition of mesh refinement is required. The algorithm is based on an automatic hierarchical region decomposition in which, in the last level, it is possible to generate quadrilateral elements with a conventional mapping strategy. In two dimensions, a subdomain is usually a triangle or a rectangle. In this algorithm, a subdomain with two boundary curves may also be allowed. Direct use of mapping algorithms imposes restrictions on the number of boundary curve segments of a subdomain to be meshed. The proposed hierarchical template scheme eliminates these restrictions, requiring only an even number of boundary segments. Other algorithms in the literature present similar characteristics. However, the implementation of the hierarchical decomposition and its templates presented here is quite simple compared to other approaches. Six high-level templates are considered for a subdomain, depending on the number of boundary curves and the number of segments on each curve. Some examples demonstrate that this simple idea may result in structured meshes of good quality. We also show that the quadrilateral elements can be used as input to generate hexahedral elements. Three-dimensional sweeping examples, which use the proposed meshing scheme in the source and target surfaces, are also shown.
机译:在任何领域分解网格化策略的背景下,本文介绍了一种四边形网格生成算法,该算法非常适合需要网格细化过渡的子域。该算法基于自动分层区域分解,在最后一级,可以使用常规映射策略生成四边形元素。在二维中,子域通常是三角形或矩形。在该算法中,也可以允许具有两个边界曲线的子域。直接使用映射算法会对要划分网格的子域的边界曲线段的数量施加限制。所提出的分层模板方案消除了这些限制,仅需要偶数个边界段。文献中的其他算法具有相似的特征。但是,与其他方法相比,此处介绍的分层分解及其模板的实现非常简单。根据边界曲线的数量和每条曲线上线段的数量,为一个子域考虑六个高级模板。一些例子表明,这种简单的想法可以产生高质量的结构化网格。我们还表明,四边形元素可以用作生成六面体元素的输入。还显示了三维扫掠示例,这些示例在源曲面和目标曲面中使用了建议的网格划分方案。

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