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首页> 外文期刊>Journal of Mechanical Science and Technology >GPU-based parallel computation for structural dynamic response analysis with CUDA
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GPU-based parallel computation for structural dynamic response analysis with CUDA

机译:基于GPU的并行计算,用于使用CUDA进行结构动力响应分析

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摘要

Frequency response analysis is an important computational tool to simulate and understand the dynamic behavior of structures. However, for more target frequency and/or larger scale structures, the runtime is greatly increased. Furthermore, increasingly complex degree of freedom problems intended to improve the accuracy of the analysis results is creating longer. In this paper, we present efficient analysis using runtime reduction in frequency response analysis with NVIDIA GPU using the compute unified device architecture (CUDA) programming environment. The proposed method is based on the sparse conjugate gradient method and a Jacobi preconditioner. Numerical examples which implemented by three different FE model are used to verify the validity. The results show that GPU parallel implementation achieves significant speed up compared to a single CPU processor. Through these results, in the frequency response analysis, we show the possibility for efficient analysis with reduction of the solving time by using GPU parallel implementation.
机译:频率响应分析是模拟和了解结构动态行为的重要计算工具。但是,对于更多的目标频率和/或更大的比例结构,运行时间会大大增加。此外,旨在提高分析结果准确性的日益复杂的自由度问题正变得越来越长。在本文中,我们提供了使用计算统一设备架构(CUDA)编程环境在NVIDIA GPU中进行频率响应分析时使用运行时减少的有效分析。该方法基于稀疏共轭梯度法和雅可比预处理器。通过三个不同的有限元模型实现的数值例子验证了有效性。结果表明,与单个CPU处理器相比,GPU并行实现显着提高了速度。通过这些结果,在频率响应分析中,我们展示了使用GPU并行实现进行有效分析并减少求解时间的可能性。

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