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StgDomain-scalable parallel domain software components for particle-in-cell finite element methods

机译:StgDomain可缩放并行域软件组件,用于单元内粒子有限元方法

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Computational models for geodynamics are becoming increasingly complex. The rise in complexity comes from an increasingly complex set of coupled, non-linear equations as well as increasing problem scales, and attempts to encapsulate effects occurring across different time and length scales. Portability, reuse and scalability of code, and solvers in particular, are thus becoming increasingly important for the community. This paper analyses the scalability of fundamental and highly reused components within a suite of geodynamics codes that utilize the Particle-In-Cell Finite Element Method. The components demonstrate highly scalable domain-decomposed meshes and particle swarms. Performance measures of processor counts, mesh and swarm sizes, and the sizeumber of state variables are provided, together with factors that can affect scalability (especially 3D decompositions). Copyright ? 2009 John Wiley & Sons, Ltd.
机译:地球动力学的计算模型变得越来越复杂。复杂性的提高是由于越来越复杂的一组耦合的非线性方程式以及问题规模的增加,并试图封装在不同时间和长度范围内发生的影响。因此,代码的可移植性,重用性和可伸缩性(尤其是求解器)对于社区变得越来越重要。本文分析了利用粒子内有限元方法的一组地球动力学代码中基本和高度重复使用的组件的可伸缩性。这些组件展示了高度可扩展的域分解网格和粒子群。提供了处理器数量,网格和群集大小以及状态变量的大小/数量以及可能影响可伸缩性(尤其是3D分解)的因素的性能度量。版权? 2009 John Wiley&Sons,Ltd.

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