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首页> 外文期刊>Engineering with Computers >Particle systems for adaptive, isotropic meshing of CAD models
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Particle systems for adaptive, isotropic meshing of CAD models

机译:用于CAD模型的各向同性网格划分的粒子系统

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摘要

We present a particle-based approach for generating adaptive triangular surface and tetrahedral volume meshes from computer-aided design models. Input shapes are treated as a collection of smooth, parametric surface patches that can meet non-smoothly on boundaries. Our approach uses a hierarchical sampling scheme that places particles on features in order of increasing dimensionality. These particles reach a good distribution by minimizing an energy computed in 3D world space, with movements occurring in the parametric space of each surface patch. Rather than using a pre-computed measure of feature size, our system automatically adapts to both curvature as well as a notion of topological separation. It also enforces a measure of smoothness on these constraints to construct a sizing field that acts as a proxy to piecewise-smooth feature size. We evaluate our technique with comparisons against other popular triangular meshing techniques for this domain.
机译:我们提出了一种基于粒子的方法,用于从计算机辅助设计模型生成自适应三角形表面和四面体体积网格。输入形状被视为可以在边界上非光滑相遇的平滑,参数化曲面补丁的集合。我们的方法使用了一种分层采样方案,该方案将粒子按维度递增的顺序放置在特征上。这些粒子通过最小化在3D世界空间中计算出的能量而达到良好的分布,并且运动发生在每个表面补丁的参数空间中。我们的系统没有使用预先计算的特征尺寸度量,而是自动适应了曲率以及拓扑分离的概念。它还在这些约束条件上实施了一种平滑度度量,以构造一个大小调整字段,以用作分段平滑特征尺寸的代理。我们通过与该领域其他流行的三角形网格划分技术进行比较来评估我们的技术。

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