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Hexahedral mesh generation via constrained quadrilateralization

机译:通过约束四边形化生成六面体网格

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摘要

Decomposing a volume into high-quality hexahedral cells is a challenging task in finite element simulations and computer graphics. Inspired by the use of a spatial twist continuum and frame field in previous hexahedral mesh generation methods, we present a method of hexahedral mesh generation via constrained quadrilateralization that combines a spatial twist continuum and frame fields. Given a volume represented by a tetrahedral mesh, surface quadrilateral mesh and frame field, we first extend the loop of the surface of a solid to a layer of hexahedral elements, then divide the solid into two smaller sub-solids by the layer, and finally handle them recursively until all of the sub-solids are empty. In our hexahedral mesh generation framework, we apply constrained quadrilateralization to extend the loop to a layer of hexahedral elements. The “divide-and-conquer” strategy used in this method is suitable for parallelization. This method can potentially lead to easier and more robust implementations that are more parallelizable and less dependent on heavy numerical libraries. The testing results show that the quality of the meshes generated by this method is similar to those produced by current state-of-the-art mesh generation methods.
机译:在有限元模拟和计算机图形学中,将体积分解为高质量的六面体单元是一项艰巨的任务。受以前的六面体网格生成方法中使用空间扭曲连续体和框架场的启发,我们提出了一种通过结合空间扭曲连续体和框架场的约束四边形生成六面体网格的方法。给定以四面体网格,表面四边形网格和框架场表示的体积,我们首先将实体表面的环延伸到六面体元素层,然后将该层将实体分为两个较小的子实体,最后递归处理它们,直到所有子实体都为空。在我们的六面体网格生成框架中,我们应用受约束的四边形化将循环扩展到一层六面体元素。此方法中使用的“分而治之”策略适用于并行化。此方法可能会导致更易实现且更健壮的实现,这些实现更可并行化并且更少依赖繁琐的数字库。测试结果表明,通过这种方法生成的网格质量与当前最新的网格生成方法所生成的网格质量相似。

著录项

  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(12),5
  • 年度 -1
  • 页码 e0177603
  • 总页数 27
  • 原文格式 PDF
  • 正文语种
  • 中图分类
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  • 入库时间 2022-08-21 11:09:49

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