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Seismic retrofitting of braced frame buildings by RC rocking wails and viscous dampers

机译:钢筋混凝土摇摆壁和粘性阻尼器对支撑框架结构的抗震改造

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A design procedure for seismic retrofitting of concentrically and eccentrically braced frame buildings is proposed and validated in this paper. Rocking walls are added to the existing system to ensure an almost uniform distribution of the interstorey displacement in elevation. To achieve direct and efficient control over the seismic performance, the design procedure is founded on the displacement-based approach and makes use of overdamped elastic response spectra. The top displacement capacity of the building is evaluated based on a rigid lateral deformed configuration of the structure and on the ductility capacity of the dissipative members of the braced frames. The equivalent viscous damping ratio of the braced structure with rocking walls is calculated based on semi-empirical relationships specifically calibrated in this paper for concentrically and eccentrically braced frames. If the equivalent viscous damping ratio of the structure is lower than the required equivalent viscous damping ratio, viscous dampers are added and arranged between the rocking walls and adjacent reaction columns. The design internal forces of the rocking walls are evaluated considering the contributions of more than one mode of vibration. The proposed design procedure is applied to a large set of archetype braced frame buildings and its effectiveness verified by nonlinear dynamic analysis.
机译:提出并验证了同心和偏心支撑框架结构的抗震加固设计程序。在现有系统中增加了挡土墙,以确保层间位移的高度分布几乎均匀。为了实现对地震性能的直接和有效控制,设计过程基于基于位移的方法,并利用了过度阻尼的弹性响应谱。根据建筑物的刚性横向变形构型和支撑框架的耗散构件的延展能力,评估建筑物的顶部位移能力。基于本文专门针对同心和偏心支撑框架校正的半经验关系,计算了带有摇摆壁的支撑结构的等效粘性阻尼比。如果结构的等效粘性阻尼比小于所需的等效粘性阻尼比,则在摇摆壁和相邻的反应塔之间添加并布置粘性阻尼器。考虑到不止一种振动模式的影响,评估了摇摆壁的设计内力。所提出的设计程序被应用于大量的原型支撑框架结构,并通过非线性动力分析验证了其有效性。

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