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A parallel finite element procedure for contact-impact problems using edge-based smooth triangular element and GPU

机译:使用边缘的光滑三角元素和GPU的接触冲击问题的平行有限元过程

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摘要

The edge-smooth finite element method (ES-FEM) can improve the computational accuracy of triangular shell elements and the mesh partition efficiency of complex models. In this paper, an approach is developed to perform explicit finite element simulations of contact-impact problems with a graphical processing unit (GPU) using a special edge-smooth triangular shell element based on ES-FEM. Of critical importance for this problem is achieving finer-grained parallelism to enable efficient data loading and to minimize communication between the device and host. Four kinds of parallel strategies are then developed to efficiently solve these ES-FEM based shell element formulas, and various optimization methods are adopted to ensure aligned memory access. Special focus is dedicated to developing an approach for the parallel construction of edge systems. A parallel hierarchy-territory contact-searching algorithm (HITA) and a parallel penalty function calculation method are embedded in this parallel explicit algorithm. Finally, the program flow is well designed, and a GPU-based simulation system is developed, using Nvidia's CUDA. Several numerical examples are presented to illustrate the high quality of the results obtained with the proposed methods. In addition, the GPU-based parallel computation is shown to significantly reduce the computing time. (C) 2017 Elsevier B.V. All rights reserved.
机译:边缘光滑的有限元方法(ES-FEM)可以提高三角壳元件的计算精度和复杂模型的网状分区效率。在本文中,使用基于ES-FEM的特殊边缘光滑三角形壳元件来开发一种方法来执行与图形处理单元(GPU)的接触问题的显式有限元模拟。对此问题的重要意义是实现更精细的并行性,以实现有效的数据加载,并最大限度地减少设备与主机之间的通信。然后开发出四种并行策略以有效地解决这些ES-FEM基壳元件公式,并采用各种优化方法来确保对齐的存储器访问。特别焦点致力于开发边缘系统平行施工方法。并行层次结构 - 地区接触搜索算法(HITA)和并行惩罚函数计算方法嵌入了该并行显式算法。最后,设计程序流程精良,使用NVIDIA的CUDA开发了一种基于GPU的仿真系统。提出了几个数值例子以说明用所提出的方法获得的高质量。另外,示出了基于GPU的并行计算以显着减少计算时间。 (c)2017 Elsevier B.v.保留所有权利。

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