Optimal design of tuned mass dampers through differential evolution method for reducing the dynamic response of structures subjected to earthquake loads

Daniel Alejandro Caicedo-Díaz, L. Lara-Valencia, Yamile Valencia-González
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引用次数: 1

Abstract

This paper introduces a methodology for the optimal design of passive Tuned Mass Dampers (TMDs) to control the dynamic response of buildings subjected to earthquake loads. The selection process of the optimal design parameters is carried out through a metaheuristic approach based on differential evolution (DE) which is a fast, efficient, and precise technique that does not require high computational efforts. The algorithm is aimed to reduce the maximum horizontal peak displacement of the structure and the root mean square (RMS) response of displacements as well. Furthermore, four more objective functions derived from multiple weighted linear combinations of the two previously mentioned parameters are also studied to obtain the most efficient TMD design configuration. A parallel process based on an exhaustive search (ES) with precision to 2 decimal positions is used to validate the optimization methodology based on DE. The proposed methodology is then applied to a 32-story case-study derived from an actual building structure and subjected to different ground acceleration registers. The best dynamic performance of the building is observed when the greatest weight is given to the RMS response of displacement in the optimization process. Finally, the numerical results reveal that the proposed methodology based on DE is effective in finding the optimal TMD design configuration by reducing the maximum floor displacement up to 4% and RMS values of displacement of up to 52% in the case-study building.
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基于差分演化法的调谐质量阻尼器优化设计以减小结构在地震荷载作用下的动力响应
本文介绍了一种被动调谐质量阻尼器(TMDs)的优化设计方法,以控制建筑物在地震荷载作用下的动力响应。最优设计参数的选择过程是通过基于差分进化(DE)的元启发式方法进行的,这是一种快速、高效和精确的技术,不需要高计算工作量。该算法旨在降低结构的最大水平峰值位移和位移的均方根响应。此外,还研究了从前面提到的两个参数的多个加权线性组合导出的另外四个目标函数,以获得最有效的TMD设计配置。使用基于精确到小数点后2位的穷举搜索(ES)的并行过程来验证基于DE的优化方法。然后将所提出的方法应用于32层的案例研究,该案例研究源自实际建筑结构,并受到不同的地面加速度寄存器的影响。当在优化过程中对位移的RMS响应给予最大权重时,可以观察到建筑物的最佳动态性能。最后,数值结果表明,在案例研究建筑中,基于DE的方法可以有效地将最大楼层位移降低到4%,位移均方根值降低到52%,从而找到最优TMD设计配置。
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发文量
36
审稿时长
12 weeks
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