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Ant colony optimization of tuned mass dampers for earthquake oscillations of high-rise structures including soil-structure interaction

机译:含土-结构相互作用的高层结构地震振动的调谐质量阻尼器的蚁群优化

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This paper investigates the optimized parameters for tuned mass dampers (TMDs) to decrease the earthquake vibrations of tall buildings; involving soil-structure interaction (SSI) effects. The time domain analysis based on Newmark method is employed in this study. To illustrate the results, Tabas and Kobe earthquakes data are applied to the model, and ant colony optimization (ACO) method is utilized to obtain the best parameters for TMD. The TMD mass, damping coefficient and spring stiffness are assumed as design variables, and the objective is to reduce both the maximum displacement and acceleration of stories. It is shown that how the ACO can be effectively applied to design the optimum TMD device. It is also indicated that the soil type greatly affects the TMD optimized parameters and the time response of structures. This study helps the researchers to better understanding of earthquake vibrations, and leads the designers to achieve the optimized TMD for high-rise buildings.
机译:本文研究了调谐质量阻尼器(TMD)的优化参数,以减少高层建筑的地震振动。涉及土壤-结构相互作用(SSI)的影响。本文采用基于Newmark方法的时域分析方法。为了说明结果,将塔巴斯和神户地震数据应用于模型,并使用蚁群优化(ACO)方法获得TMD的最佳参数。将TMD质量,阻尼系数和弹簧刚度假定为设计变量,目的是减少最大位移和层的加速度。结果表明,如何有效地使用ACO设计最佳的TMD器件。还表明,土壤类型对TMD优化参数和结构的时间响应有很大影响。这项研究有助于研究人员更好地了解地震振动,并使设计人员为高层建筑实现优化的TMD。

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