Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing, China.
State Key Laboratory of Hydraulic Engineering Simulation and Safety, Tianjin, China.
PLoS One. 2020 May 12;15(5):e0232854. doi: 10.1371/journal.pone.0232854. eCollection 2020.
Since meshes of poor quality give rise to low accuracy in finite element analysis and kinds of inconveniences in many other applications, mesh smoothing is widely used as an essential technique for the improvement of mesh quality. With respect to this issue, the main contribution of this paper is that a novel mesh smoothing method based on an exterior-angle-split process is proposed. The proposed method contains three main stages: the first stage is independent element geometric transformation performed by exterior-angle-split operations, treating elements unconnected; the second stage is to offset scaling and displacement induced by element transformation; the third stage is to determine the final positions of nodes with a weighted strategy. Theoretical proof describes the regularity of this method and many numerical experiments illustrate its convergence. Not only is this method applicable for triangular mesh, but also can be naturally extended to arbitrary polygonal surface mesh. Quality improvements of demonstrations on triangular and quadrilateral meshes show the effectiveness of this method.
由于质量差的网格会导致有限元分析的准确性降低,并在许多其他应用中带来各种不便,因此网格平滑被广泛用作提高网格质量的基本技术。关于这个问题,本文的主要贡献在于提出了一种基于外角分裂过程的新颖的网格平滑方法。该方法包含三个主要阶段:第一阶段是通过外角分裂操作进行的独立元素几何变换,处理不相连的元素;第二阶段是对元素变换引起的缩放和平移进行偏移;第三阶段是使用加权策略确定节点的最终位置。理论证明描述了该方法的规律性,并且许多数值实验说明了其收敛性。该方法不仅适用于三角形网格,而且可以自然地扩展到任意多边形曲面网格。对三角形和四边形网格的演示的质量改进表明了该方法的有效性。