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The implications of parallel processing on h-p adaptive finite element analysis for electromagnetics

机译:并行处理对电磁的h-p自适应有限元分析的影响

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摘要

The primary implications of parallel processing on h-p adaptive finite element methods for electromagnetic analysis are investigated. Aside from the conventional benefits and costs associated with the parallelization of the essentially non-adaptive finite element modules, significant fundamental advantages that are unique to the adaptive process itself are explored. First, the overall speedup potential of local error estimator evaluation and h-p discretization refinement is superior to that of finite element solver execution in parallel environments, and therefore justifies the use of more complex and computationally intensive adaption control strategies. Second, the availability of parallel processing motivates the comparative assessment of different discretization strategies at each h-p refinement step to help guide the evolution of the adaption. Practical results representing a range of parallel configurations are computed to illustrate the concepts.
机译:研究了并行处理对电磁分析h-p自适应有限元方法的主要意义。除了与基本不自适应的有限元模块并行化相关的常规收益和成本外,还探索了自适应过程本身独有的重要基础优点。首先,局部误差估计器评估和h-p离散化细化的总体提速潜力优于并行环境中有限元求解器执行的提速潜力,因此证明使用更复杂且计算量大的自适应控制策略是合理的。其次,并行处理的可用性促使在每个h-p精炼步骤对不同离散化策略进行比较评估,以帮助指导适应的发展。计算代表一系列并行配置的实际结果以说明这些概念。

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