用于超材料计算的具有宽松边界条件的多尺度模型

IF 1.3 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING Software Impacts Pub Date : 2024-05-10 DOI:10.1016/j.simpa.2024.100659
Antonio Tabanera Manzanares , Luis Saucedo-Mora , Miguel Ángel Sanz Gómez , Francisco Montans Leal
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引用次数: 0

摘要

所介绍的软件旨在通过多尺度模型执行超材料计算,将具有大量自由度的原始问题(超材料结构)划分为每个自由度小得多的较小问题的总和,从而显著降低 RAM 消耗方面的计算成本。在不同的超材料探测中,RAM 的使用量减少了 90% 以上,而且问题的维度越大,效果越明显。这些结果已作为该理论概念的一个很有前途的探测结果发表。
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Multiscale model with relaxed boundary conditions for metamaterial calculations

The software presented is designed to perform metamaterial calculations via a multiscale model, where an original problem (a metamaterial structure) with a large number of degrees of freedom is divided into the sum of smaller problems with much less degrees of freedom each, therefore reducing noticeably the computational cost in terms of RAM consumption. RAM usage has been reduced by more than 90% in different probes of metamaterial, and the larger the dimension of the problem, the greater the enhancement. Those results are published as a promising probe of concept of the theory.

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来源期刊
Software Impacts
Software Impacts Software
CiteScore
2.70
自引率
9.50%
发文量
0
审稿时长
16 days
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