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Hex mesh topological improvement based on frame field and sheet adjustment

机译:基于框架场和片材调整的十六进制网格拓扑改进

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High-quality hex meshes are crucial for finite element analysis. However, geometric smoothing techniques applied for improving the quality of a hex mesh cannot ensure that the requirements of finite element analysis are satisfied. Therefore, to address this challenge, in this paper, we present a novel approach for topological optimization of a hex mesh based on frame field and sheet adjustment. Our approach improves the quality of the worst elements of the hex mesh by optimizing its topological structure. The approach first builds an initial frame field from the input hex mesh and then optimizes it to obtain a resultant high-quality frame field. Next, according to the initial and optimized frame fields, the process determines the most problematic sheet that degrades the quality of the hex mesh. Finally, based on the high-quality frame field and the current topological structure of the hex mesh, our approach uses sheet operations to adjust the structure of this most problematic sheet. Experimental results demonstrate that our topological optimization approach can effectively improve the minimum Scaled Jacobian value of the hex mesh. (C) 2017 Elsevier Ltd. All rights reserved.
机译:高质量的十六进制网格对于有限元分析至关重要。然而,应用用于改善十六进制网格质量的几何平滑技术不能确保满足有限元分析的要求。因此,为了解决这一挑战,在本文中,我们提出了一种基于框架场和纸张调整的六角网格拓扑优化的新方法。我们的方法通过优化其拓扑结构来提高六角网格最差元素的质量。该方法首先从输入的十六进制网格构建初始帧字段,然后优化它以获得产生的高质量帧字段。接下来,根据初始和优化的帧字段,该过程确定最有问题的表格,可降低十六进制网格的质量。最后,基于高质量的框架场和六角网格的当前拓扑结构,我们的方法使用纸张操作来调整最有问题的表格的结构。实验结果表明,我们的拓扑优化方法可以有效地提高了十六进制网格的最小缩放雅各比价值。 (c)2017 Elsevier Ltd.保留所有权利。

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