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Strategies for h-p Adaptive Finite Element Analysis for Electromagnetics in Large Scale Parallel Computing Environments: Theory and Practice

机译:大规模平行计算环境中电磁测学的H-P自适应有限元分析的策略:理论与实践

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Practical methods and strategies for implementing and using h-p adaptive finite element analysis, for electromagnetic device modeling and simulation, in large scale parallel computing environments are developed and investigated. The primary focus of this research is to explore and evaluate the theory and practice of developing and exploiting advanced adaptive techniques within supercomputing range parallel processing systems. The essential objective of this contribution is to assess the potential advantages and related costs of employing broad-breadth and deep multilevel refinement trajectory trees with self-adjusting pruning strategies, for expediting h-p adaptive solution convergence, and to facilitate the assessment of solution integrity, stability and accuracy. The CLUMEQ Supercomputer Centre at McGill was used for all large scale computations; process management was handled using MPI.
机译:开发并研究了在大规模并行计算环境中实现和使用H-P自适应有限元分析,用于电磁装置建模和仿真的实用方法和策略。本研究的主要重点是探索和评估在超级计算范围并行处理系统内开发和利用先进的自适应技术的理论和实践。本贡献的基本目标是评估采用宽广广度和深层多级细化轨迹树的潜在优势和相关成本,用于加快HP自适应解决方案收敛,并促进解决方案完整性,稳定性的评估和准确性。 McGill的Clumeq超级计算机中心用于所有大规模计算;处理管理使用MPI处理。

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