折叠嵌入式单元复合物,实现更安全的六面体网格划分

Hendrik Brückler, M. Campen
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引用次数: 0

摘要

我们提出了一组操作符来执行修改,特别是在离散嵌入背景网格的体积细胞复合体中进行崩溃和分裂。拓扑完整性和几何嵌入有效性被小心地维护。在六面体网格生成的背景下,我们策略性地将这些算子应用于体积块分解,即所谓的t网格或基础复合体。这可以避免在基于3D整数网格地图的通用网格管道中昂贵且不可靠的全局体积重映射步骤。实际上,我们将此步骤简化为更简单的局部多维数据集映射问题,这些问题有可靠的解决方案。因此,网格生成过程的鲁棒性增加,特别是针对粗糙或块结构的六面体网格。我们进一步扩展这个管道来支持特征对齐约束,并系统地尊重这些约束,从而能够生成与点、曲线和特别感兴趣的曲面对齐的网格,无论是在边界上还是在域的内部。
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Collapsing Embedded Cell Complexes for Safer Hexahedral Meshing
We present a set of operators to perform modifications, in particular collapses and splits, in volumetric cell complexes which are discretely embedded in a background mesh. Topological integrity and geometric embedding validity are carefully maintained. We apply these operators strategically to volumetric block decompositions, so-called T-meshes or base complexes, in the context of hexahedral mesh generation. This allows circumventing the expensive and unreliable global volumetric remapping step in the versatile meshing pipeline based on 3D integer-grid maps. In essence, we reduce this step to simpler local cube mapping problems, for which reliable solutions are available. As a consequence, the robustness of the mesh generation process is increased, especially when targeting coarse or block-structured hexahedral meshes. We furthermore extend this pipeline to support feature alignment constraints, and systematically respect these throughout, enabling the generation of meshes that align to points, curves, and surfaces of special interest, whether on the boundary or in the interior of the domain.
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