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首页> 外文期刊>Applied Sciences >Simultaneous Smoothing and Untangling of 2D Meshes Based on Explicit Element Geometric Transformation and Element Stitching
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Simultaneous Smoothing and Untangling of 2D Meshes Based on Explicit Element Geometric Transformation and Element Stitching

机译:基于显式元素几何变换和元素拼接的2D网格同时平滑和解压缩

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摘要

Mesh quality can affect both the accuracy and efficiency of numerical solutions. This paper first proposes a geometry-based smoothing and untangling method for 2D meshes based on explicit element geometric transformation and element stitching. A new explicit element geometric transformation (EEGT) operation for polygonal elements is firstly presented. The transformation, if applied iteratively to an arbitrary polygon (even inverted), will improve its regularity and quality. Then a well-designed element stitching scheme is introduced, which is achieved by carefully choosing appropriate element weights to average the temporary nodes obtained by the above individual element transformation. Based on the explicit element geometric transformation and element stitching, a new mesh smoothing and untangling approach for 2D meshes is proposed. The proper choice of averaging weights for element stitching ensures that the elements can be transitioned smoothly and uniformly throughout the calculation domain. Numerical results show that the proposed method is able to produce high-quality meshes with no inverted elements for highly tangled meshes. Besides, the inherent regularity and fine-grained parallelism make it suitable for implementation on Graphic Processor Unit (GPU).
机译:网格质量可以影响数字解决方案的准确性和效率。本文首先提出了一种基于显式元素几何变换和元素拼接的2D网格的几何形状的平滑和解压缩方法。首先呈现了一种新的显式元素几何变换(EEGT)操作的多边形元素。如果迭代地应用于任意多边形(甚至反转),则转换将提高其规则性和质量。然后引入精心设计的元件缝合方案,其通过小心地选择适当的元素权重到平均通过上述各个元件变换而获得的临时节点来实现。基于显式元素几何变换和元素拼接,提出了一种用于2D网格的新网格平滑和未进行解压缩方法。用于元件拼接的平均权重的正确选择可确保元件可以在整个计算域中平滑且均匀地转换。数值结果表明,该方法能够生产高质量的网格,没有倒置元件,用于高度缠结网格。此外,固有规律性和细粒度并行性使其适用于图形处理器单元(GPU)上的实现。

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