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A scalable parallel algorithm for atmospheric general circulation models on a multi-core cluster

机译:多核集群大气大气环流模型的可扩展并行算法

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摘要

High-performance computing of atmospheric general circulation models (AGCMs) has been receiving increasing attention in earth science research. However, when scaling to large-scale multi-core computing, the parallelization of an AGCM which demands fast parallel computing for long-time integration or climate simulation becomes extremely challenging due to its inner complex numerical calculation. The previous Institute of Atmospheric Physics of the Chinese Academy of Sciences Atmospheric General Circulation Model version 4.0 (IAP AGCM4.0) with one-dimensional domain decomposition can only run on dozens of CPU cores, so the paper proposes a two-dimensional domain decomposition parallel algorithm for it. In the parallel implementation of the IAP AGCM4.0, its dynamical core utilizes a hybrid form of latitude/longitude decomposition and vertical direction/longitude circle direction decomposition. Through experiments on a multi-core cluster, we confirmed that our algorithm is efficient and scalable. The parallel efficiency of the IAP AGCM4.0 can reach up to 50.88% on 512 CPU cores, and the IAP AGCM4.0 can be run long-term simulations for climate change research.
机译:大气总循环模型(AGCM)的高性能计算已在地球科学研究中受到越来越多的关注。然而,当扩展到大规模多核计算时,由于其内部复杂的数值计算,需要快速并行计算以进行长期集成或气候模拟的AGCM并行化变得极具挑战性。以前的中国科学院大气物理研究所大气通用环流模型版本4.0(IAP AGCM4.0)具有一维域分解功能,只能在数十个CPU内核上运行,因此本文提出了一种并行的二维域分解方法算法。在IAP AGCM4.0的并行实现中,其动态核心采用纬度/经度分解和垂直方向/经度圆向分解的混合形式。通过在多核群集上进行的实验,我们确认了我们的算法高效且可扩展。 IAP AGCM4.0在512个CPU内核上的并行效率可以达到50.88%,并且IAP AGCM4.0可以长期运行以模拟气候变化研究。

著录项

  • 来源
    《Future generation computer systems》 |2017年第7期|1-10|共10页
  • 作者单位

    Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, China,Computer Network Information Center, Chinese Academy of Sciences, China;

    Computer Network Information Center, Chinese Academy of Sciences, China;

    International Center for Climate and Environment Sciences, Institute of Atmospheric Physics, Chinese Academy of Sciences, China;

    International Center for Climate and Environment Sciences, Institute of Atmospheric Physics, Chinese Academy of Sciences, China;

    School of Computer Science, China University of Ceosciences, China,Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, China;

    School of Computing Science, Newcastle University, United Kingdom;

    School of Information Technologies, The University of Sydney, Australia;

  • 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
  • 中图分类
  • 关键词

    high performance computing; parallel algorithm; domain decomposition; atmospheric general circulation model;

    机译:高性能计算;并行算法域分解;大气总循环模型;

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