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首页> 外文期刊>International Journal for Numerical Methods in Engineering >Advances in tetrahedral mesh generation for modelling of three-dimensional regions with complex, curvilinear crack shapes
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Advances in tetrahedral mesh generation for modelling of three-dimensional regions with complex, curvilinear crack shapes

机译:四面体网格生成技术的进展,用于建模具有复杂曲线裂纹形状的三维区域

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摘要

Advances in tetrahedral mesh generation for general, three-dimensional domains with and without cracks are described and validated through extensive studies using a wide range of global geometries and local crack shapes. Automated methods are described for (a) implementing geometrical measures in the vicinity of the crack to identify irregularities and to improve mesh quality and (b) robust node selection on crack surfaces to ensure optimal meshing both locally and globally. The resulting numerical algorithms identify both node coincidence and also local crack surface penetration due to discretization of curved crack surfaces, providing a proven approach for removing inconsistencies. Numerical examples using the resulting 3D mesh generation program to mesh complex 3D domains containing a range of crack shapes and sizes are presented. Quantitative measures of mesh quality clearly show that the element shape and size distributions are excellent. including in regions surrounding crack fronts. Copyright © 2005 John Wiley & Sons, Ltd.
机译:通过使用广泛的整体几何形状和局部裂纹形状的广泛研究,描述并验证了具有和不具有裂纹的常规三维区域四面体网格生成的进展。描述了用于(a)在裂缝附近实施几何测量以识别不规则并提高网格质量以及(b)在裂缝表面上进行稳健的节点选择以确保局部和全局最佳网格划分的自动化方法。所得的数值算法不仅可以识别节点重合,还可以识别由于弯曲裂缝表面离散而导致的局部裂缝表面渗透,从而提供了一种行之有效的消除不一致的方法。给出了使用所得3D网格生成程序对包含一系列裂纹形状和大小的复杂3D域进行网格化的数值示例。网格质量的定量测量清楚地表明,单元形状和尺寸分布非常好。包括裂纹前沿周围的区域。版权与复制; 2005年John Wiley&Sons,Ltd.

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