【24h】

MASSIVE HYBRID PARALLELISM FOR FULLY IMPLICIT MULTIPHYSICS

机译:全部隐含多发性的巨大混合并行性

获取原文

摘要

As hardware advances continue to modify the supercomputing landscape, traditional scientific software development practices will become more outdated, ineffective, and inefficient. The process of rewriting/retooling existing software for new architectures is a Sisyphean task, and results in substantial hours of development time, effort, and money. Software libraries which provide an abstraction of the resources provided by such architectures are therefore essential if the computational engineering and science communities are to continue to flourish in this modern computing environment. The Multiphysics Object Oriented Simulation Environment (MOOSE) framework enables complex multiphysics analysis tools to be built rapidly by scientists, engineers, and domain specialists, while also allowing them to both take advantage of current HPC architectures, and efficiently prepare for future supercomputer designs. MOOSE employs a hybrid shared-memory and distributed-memory parallel model and provides a complete and consistent interface for creating multiphysics analysis tools. In this paper, a brief discussion of the mathematical algorithms underlying the framework and the internal object-oriented hybrid parallel design are given. Representative massively parallel results from several applications areas are presented, and a brief discussion of future areas of research for the framework are provided.
机译:随着硬件进步继续修改超级计算景观,传统的科学软件开发实践将变得更加过时,无效,效率低下。重写/重新处理现有软件的新架构是一种Sisyphean任务,并导致大量的开发时间,努力和金钱。因此,如果计算工程和科学社区在这一现代计算环境中继续蓬勃发展,那么提供由此类架构提供的资源的抽象的软件图书馆是必不可少的。多体物体面向对象的模拟环境(MOOSE)框架可以通过科学家,工程师和域专家快速构建复杂的多私人分析工具,同时还可以利用当前的HPC架构,并有效地为未来的超级计算机设计准备。驼鹿采用混合共享存储器和分布式内存并行模型,并提供了一个完整且一致的接口,用于创建多体性分析工具。在本文中,给出了框架底层的数学算法和内部对象的混合并行设计的简要讨论。提供了来自几种应用领域的代​​表性的大规模平行结果,并提供了对未来对框架的未来研究领域的简要讨论。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号