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Large-Scale 3D Phase Field Dislocation Dynamics Simulations On High-Performance Architectures

机译:高性能架构上的大型3D相场位错动力学仿真

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摘要

In this paper we present the development and performance of a three-dimensional phase field dislocation dynamics (3D PFDD) model for large-scale dislocation-mediated plastic deformation on high-performance architectures. Through the parallelization of this algorithm, efficient run times can be achieved for large-scale simulations. The algorithm's performance is analyzed over several computing platforms including Infiniband, GigE, and proprietary (SiCortex) interconnects. Scalability is considered on data sets up to 2.0483, along with the efficiency on up to 2,048 processors. Results show that scalability improves as the size of the data set increases and that the overall performance is best on the Infiniband interconnect. In addition, a performance model has been developed to predict run times and efficiency on large sets of data running on multiple processors. This performance analysis shows that this parallel code is capable of harnessing the greater computer power available from petascale systems.
机译:在本文中,我们介绍了高性能结构上大规模位错介导的塑性变形的三维相场位错动力学(3D PFDD)模型的开发和性能。通过该算法的并行化,可以实现大规模仿真的有效运行时间。在包括Infiniband,GigE和专有(SiCortex)互连在内的多个计算平台上分析了该算法的性能。在高达2.0483的数据集上考虑了可伸缩性,并在高达2,048的处理器上考虑了效率。结果表明,可扩展性随数据集大小的增加而提高,并且整体性能在Infiniband互连上最佳。此外,已经开发了一种性能模型来预测在多个处理器上运行的大量数据的运行时间和效率。此性能分析表明,此并行代码能够利用来自petascale系统的更大计算机功能。

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  • 作者单位

    School of Mechanical Engineering, Purdue University, West Lafayette, In 47906, USA;

    Rosen Center for Advanced Computing, Purdue University, West Lafayette, In 47906, USA;

    Rosen Center for Advanced Computing, Purdue University, West Lafayette, In 47906, USA;

    School of Mechanical Engineering, Purdue University, West Lafayette, In 47906, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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