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Multi‐objective design and performance investigation of a high‐rise building with track nonlinear energy sinks

机译:带有轨道非线性能量吸收器的高层建筑的多目标设计和性能研究

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摘要

This paper presents a track nonlinear energy sink (track NES) and a single-sided vibro-impact track nonlinear energy sink (SSVI track NES) as effective control strategies to mitigate the seismic response of high-rise buildings. The study commences with the analytical models of the track NES and the SSVI track NES and the state-space description of the control system. Subsequently, single-objective and multi-objective optimizations are conducted, and the performance of these devices is evaluated comprehensively in terms of control effectiveness and economic factors when attached to a representative 32-story high-rise building. Numerical results show that the SSVI track NES exhibits strong robustness against changes in the structural stiffness and the input energy level. Compared with the track NES and tuned mass damper, the multio-bjectively designed SSVI track NES is shown to be the most cost-effective device because it has a very small stroke and requires only slight damping. The cost-effectiveness of the SSVI track NES is also demonstrated on a 20-story shear-frame building. Additionally, the seismic performance of the SSVI track NES can be further improved by adjusting the position of the impact surface. Therefore, the track NES and, more so, the SSVI track NES can be designed as highly cost-effective control strategies and offer a promising solution for seismic response mitigation of high-rise buildings.
机译:本文提出了一种轨道非线性消能器(轨道NES)和单侧振动冲击轨道非线性消能器(SSVI轨道NES),作为减轻高层建筑地震响应的有效控制策略。研究从轨道NES和SSVI轨道NES的分析模型以及控制系统的状态空间描述开始。随后,进行了单目标和多目标优化,并且将这些设备连接到具有代表性的32层高层建筑时,会根据控制效果和经济因素全面评估这些设备的性能。数值结果表明,SSVI轨道NES对结构刚度和输入能级的变化表现出较强的鲁棒性。与轨道NES和调谐质量阻尼器相比,多曲面设计的SSVI轨道NES被证明是最具成本效益的设备,因为它具有非常小的行程,并且仅需很小的阻尼。 SSVI轨道NES的成本效益也在20层的剪力墙建筑中得到了证明。另外,通过调节冲击表面的位置,可以进一步提高SSVI轨道NES的抗震性能。因此,可以将轨道NES以及SSVI轨道NES设计成具有高成本效益的控制策略,并为减轻高层建筑的地震响应提供了有希望的解决方案。

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