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Seismic lateral displacement analysis and design of an earthquake-resilient dual wall-frame system

机译:抗震双壁框架系统的地震横向位移分析与设计

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摘要

Traditional reinforced concrete shear walls are both prone to damage during earthquakes and difficult to repair after an earthquake. Accordingly, two replaceable buckling-restrained braces (BRBs) are installed at the base of a hinged wall (HW) to form an earthquake-resilient shear wall (HW with BRBs at the base, HWBB). This paper focuses on the seismic analysis and the design of a dual system with an HWBB and a moment-resisting frame (HWBBF). An elastic lateral displacement analysis is conducted for the HWBBFs based on an equivalent continuous model, which consists of a flexural beam with a rotational spring at the base and a shear beam. The strength and stiffness demand formulas of the HW when the frame enters the inelastic stage are approximated based on the results of the elastic analysis. Based on the provided inelastic formulas, an elastic displacement spectrum-based design procedure is presented for HWBBFs to directly determine the sectional area of the BRBs, the required strength and stiffness of the HW. As an example, a 6-story HWBBF is designed using the proposed procedure, and a series of nonlinear response history analyses (NRHAs) are used to validate the procedure and inelastic formulas. The example effectively illustrates the errors associated with the target roof displacement and the formulaic HW demands compared to the corresponding NRHA results, respectively.
机译:传统的钢筋混凝土剪力墙在地震中容易损坏,并且在地震后难以修复。因此,在铰接墙(HW)的底部安装了两个可更换的屈曲约束撑杆(BRB),以形成抗震的剪力墙(底部带有BRB的HW,HWBB)。本文着重于地震分析和具有HWBB和抗力矩框架(HWBBF)的双系统设计。基于等效连续模型对HWBBF进行了弹性侧向位移分析,该模型由在基础处带有旋转弹簧的挠性梁和剪力梁组成。基于弹性分析的结果,可以估算出框架进入非弹性阶段时,HW的强度和刚度需求公式。基于提供的非弹性公式,提出了基于弹性位移谱的HWBBF设计程序,可直接确定BRB的截面积,所需的HW强度和刚度。例如,使用所提出的程序设计了一个六层的HWBBF,并使用一系列非线性响应历史分析(NRHA)来验证该程序和非弹性公式。该示例分别说明了与相应的NRHA结果相比,与目标屋顶位移和公式化的硬件要求相关的误差。

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