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Interleaving Delaunay Refinement and Optimization for Practical Isotropic Tetrahedron Mesh Generation

机译:实用各向同性四面体网格生成的交错Delaunay细化和优化

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摘要

We present a practical approach to isotropic tetrahedral meshing of 3D domains bounded by piecewise smooth surfaces. Building upon recent theoretical and practical advances, our algorithm interleaves Delaunay refinement and mesh optimization to generate quality meshes that satisfy a set of user-defined criteria. This interleaving is shown to be more conservative in number of Steiner point insertions than refinement alone, and to produce higher quality meshes than optimization alone. A careful treatment of boundaries and their features is presented, offering a versatile framework for designing smoothly graded tetrahedral meshes.
机译:我们提出了一种实用的方法,对由分段光滑表面界定的3D域进行各向同性四面体网格划分。基于最新的理论和实践进展,我们的算法对Delaunay细化和网格优化进行了交错处理,以生成满足一组用户定义标准的高质量网格。事实表明,这种交织在Steiner点插入的数量上要比单独完善更为保守,并且比单独进行优化可以产生更高质量的网格。提出了对边界及其特征的仔细处理,为设计平滑渐变的四面体网格提供了通用框架。

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