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A fast multipole method accelerated adaptive background cell-based domain integration method for evaluation of domain integrals in 3D boundary element method

机译:快速多极点方法基于背景单元的加速自适应背景域集成方法,用于评估3D边界元方法中的域积分

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摘要

A background cell-based domain integration method is proposed in this paper for evaluating domain integrals in 3D problems. The cells are created by an adaptive oct-tree structure based on the information of boundary elements, and no other discretization is needed. Cells that contain boundary elements can be subdivided into smaller sub-cells adaptively to obtain the desired accuracy according to the sizes and levels of the boundary elements. Applying the method directly in the boundary element method is time-consuming since the time complexity is O(NM), where N and M are the numbers of nodes and cells, respectively. The fast multipole method is coupled with the cell-based domain integration method to further accelerate the computational efficiency, and the main formulations are introduced in this paper. Numerical examples have demonstrated the accuracy and efficiency of the proposed method.
机译:本文提出了一种基于背景单元的域积分方法,用于评估3D问题中的域积分。单元是根据边界元素的信息通过自适应八叉树结构创建的,不需要其他离散化。可以根据边界元素的大小和级别,将包含边界元素的单元自适应地细分为较小的子单元,以获得所需的精度。由于时间复杂度为O(NM),因此直接在边界元素方法中应用该方法非常耗时,其中N和M分别是节点和单元的数目。快速多极点方法与基于单元的域集成方法相结合,进一步提高了计算效率,并介绍了主要公式。数值算例表明了该方法的准确性和有效性。

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