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Swing Story-Lateral Force Resisting System Connected with Dampers: Novel Seismic Vibration Control System for Building Structures

机译:摆动故事 - 侧向力抵抗系统与阻尼器连接:用于建筑结构的新型地震振动控制系统

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摘要

This study proposes a vibration control system consisting of a swing story subsystem, a lateral force resisting subsystem, and connecting dampers. The swing story subsystem comprising hinged columns connected to continuous beams is employed to resist the gravity load, and perimeter moment-resisting frames the lateral force. Dampers are adopted to transfer lateral forces between the two subsystems and are used to dissipate seismic energy. The main characteristic of the system is that both the fundamental and higher-mode responses can be reduced remarkably compared with conventional moment-resisting frame structures. This paper establishes equations of motion of the proposed swing story control system, and the dampers are optimally designed by a multiobjective optimization algorithm with the combination of the stability maximization and H2 criteria. To avoid instability of the flexible swing stories, sufficient stiffness is required for the dampers, and buckling analysis is thus conducted to determine the required minimum stiffness. Excellent vibration control effects of the proposed system are verified through numerical analyses of three-story and nine-story benchmark structures. (C) 2017 American Society of Civil Engineers.
机译:本研究提出了一种由摆动故事子系统,横向力抵抗子系统和连接阻尼器组成的振动控制系统。包括连接到连续光束的铰接柱的挥杆故事子系统用于抵抗重力载荷,并且横向力的周长力矩抵抗框架。采用阻尼器来转移两个子系统之间的横向力,并用于散发地震能量。系统的主要特征是,与传统的力矩抗框架结构相比,可以显着降低基本和更高模式的响应。本文建立了建议的摆动故事控制系统的运动方程,并且通过多目标优化算法进行了最佳设计,该算法具有稳定性最大化和H2标准的组合。为了避免柔性摆动故事的不稳定性,对阻尼器需要足够的刚度,因此进行屈曲分析以确定所需的最小刚度。通过三层和九层基准结构的数值分析来验证所提出的系统的优异振动控制效果。 (c)2017美国土木工程师协会。

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