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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Optimization of viscoelastic systems combining robust condensation and metamodeling
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Optimization of viscoelastic systems combining robust condensation and metamodeling

机译:结合稳健凝聚和元模型优化粘弹性系统

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The effective design of viscoelastic dampers as applied to real-world complex engineering structures can be conveniently carried out by using modern multiobjective numerical optimization techniques. The large number of evaluations of the cost functions normally combined with the typically high dimensions of finite element models of industrial structures makes multiobjective optimization very costly, sometimes unfeasible. Those difficulties motivate the study reported in this paper, in which a strategy is proposed consisting in the use of evolutionary algorithms specially adapted to multiobjective optimization of viscoelastic systems, combined with robust condensation and metamodeling. After the discussion of various theoretical aspects, a numerical application is presented to illustrate the use and demonstrate the effectiveness of the methodology proposed for the optimal design of viscoelastic constrained layers.
机译:通过使用现代多目标数值优化技术,可以方便地进行应用于现实世界中复杂工程结构的粘弹性阻尼器的有效设计。通常,对成本函数的大量评估与工业结构有限元模型的典型高维组合在一起,使得多目标优化的成本非常高,有时甚至不可行。这些困难推动了本文报道的研究,其中提出了一种策略,该策略包括使用特别适合粘弹性系统多目标优化的演化算法,并结合鲁棒的凝聚和元建模。在讨论了各个理论方面之后,提出了一个数值应用程序来说明粘弹性约束层的最佳设计方法的使用并证明了所提出方法的有效性。

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