首页> 外文期刊>International journal of numerical analysis and modeling >DYNAMIC LOAD BALANCING FOR THE PARALLEL, ADAPTIVE, MULTIGRID SOLUTION OF IMPLICIT PHASE-FIELD SIMULATIONS
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DYNAMIC LOAD BALANCING FOR THE PARALLEL, ADAPTIVE, MULTIGRID SOLUTION OF IMPLICIT PHASE-FIELD SIMULATIONS

机译:对隐式相位场模拟的并行,自适应,多重版解决方案的动态负载平衡

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In this paper we assess the performance of a selection of load balancing strategies for a parallel, adaptive multigrid solver that has been developed for the implicit solution of phase-field problems. The strategies considered include a number of standard approaches and a new technique that we propose specifically for multigrid solvers. This technique takes account of the sequential nature of the grid correction used in multiplicative multilevel algorithms such as multigrid. The paper focuses on two phase-field example problems which model the rapid solidification of an undercooled binary alloy: using isothermal and non-isothermal models respectively. We undertake a systematic comparison of the different load-balancing strategies for a selection of different adaptive mesh scenarios. We conclude that the optimal choice of load-balancing strategy depends critically on the computation to communication ratio of the parallel multigrid solver, and that in the computation-dominated limit our proposed technique is typically the most effective of those considered.
机译:在本文中,我们评估了为并行的自适应多角形求解器的选择负载平衡策略的性能,该求解器已经开发出用于相域问题的隐式解决方案。考虑的策略包括许多标准方法和新技术,我们提出专门针对多重候选者的求解器。该技术考虑了乘法多级算法中使用的网格校正的顺序性质,例如Multigrid。本文重点介绍了两种相场示例问题,该问题模拟了过冷二元合金的快速凝固:使用等温和非等温模型。我们对选择不同自适应网格场景的不同负载平衡策略进行了系统的比较。我们得出结论,负载平衡策略的最佳选择在于并行多国内求解器的通信比的计算尺寸尺寸依略地取决于对链路的通信比,并且在计算主导的限制中,我们所提出的技术通常是最有效的。

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