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Robust Optimum Design of Multiple Tuned Mass Dampers for Vibration Control in Buildings Subjected to Seismic Excitation

机译:地震作用下建筑物振动控制的多重调谐质量阻尼器的鲁棒优化设计

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摘要

Passive energy devices are well known due to their performance for vibration control in buildings subjected to dynamic excitations. Tuned mass damper (TMD) is one of the oldest passive devices, and it has been very much used for vibration control in buildings around the world. However, the best parameters in terms of stiffness and damping and the best position of the TMD to be installed in the structure are an area that has been studied in recent years, seeking optimal designs of such device for attenuation of structural dynamic response. Thus, in this work, a new methodology for simultaneous optimization of parameters and positions of multiple tuned mass dampers (MTMDs) in buildings subjected to earthquakes is proposed. It is important to highlight that the proposed optimization methodology considers uncertainties present in the structural parameters, in the dynamic load, and also in the MTMD design with the aim of obtaining a robust design; that is, a MTMD design that is not sensitive to the variations of the parameters involved in the dynamic behavior of the structure. For illustration purposes, the proposed methodology is applied in a 10-story building, confirming its effectiveness. Thus, it is believed that the proposed methodology can be used as a promising tool for MTMD design.
机译:无源能量装置由于其在受到动态激励的建筑物中的振动控制性能而众所周知。调谐质量阻尼器(TMD)是最古老的无源设备之一,已广泛用于世界各地建筑物的振动控制。然而,关于刚度和阻尼的最佳参数以及要安装在结构中的TMD的最佳位置是近年来研究的一个领域,寻求这种装置的最佳设计以减小结构动力响应。因此,在这项工作中,提出了一种同时优化地震建筑物中多重调谐质量阻尼器(MTMD)的参数和位置的新方法。重要的是要强调的是,所提出的优化方法要考虑结构参数,动态载荷以及MTMD设计中存在的不确定性,以期获得坚固的设计。也就是说,MTMD设计对结构的动态行为所涉及的参数的变化不敏感。为了便于说明,将建议的方法应用于10层建筑物中,以确认其有效性。因此,相信所提出的方法可以用作MTMD设计的有前途的工具。

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