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Dynamic response of post-tensioned rocking wall-moment frames under near-fault ground excitation

机译:靠近故障地面励磁下张紧摇摆壁矩框架的动态响应

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摘要

The dynamic responses of a rocking wall-moment frame (RWMF) with a post-tensioned cable are investigated The nonlinear equations of motions are developed, which can be categorized as a single-degree-of-freedom (SDOF) model. The model is validated through comparison of the rocking response of the rigid rocking wall (RRW) and displacement of the moment frame (MF) against that obtained from Finite Element analysis when subjected ground motion excitation. A comprehensive parametric analysis is carried out to determine the seismic performance factors of the RWMF systems under near-fault trigonometric pulse excitation. The horizontal displacement of the RWMF system is compared with that of MF structures without RRW, revealing the damping effect of the RRW. Frame displacement spectra excited by trigonometric pulses and recorded earthquake ground motions are constructed. The effects of pulse type, mass ratio, frame stiffness, and wall slenderness variations on the displacement spectra are presented. The paper shows that the coupling with a RRW has mixed results on suppressing the maximum displacement response of the frame.
机译:研究了摇摆壁矩框架(RWMF)与后张扣电缆的动态响应,开发了运动的非线性方程,其可以被分类为自由度(SDOF)模型。通过比较刚性摇摆壁(RRW)的摇摆响应和力矩框架(MF)的位移来验证该模型,而当受到研磨的地面运动激励时从有限元分析获得的那样。进行了综合参数分析,以确定接近故障三角脉冲激发下RWMF系统的地震性能因素。 RWMF系统的水平位移与MF结构的无RRW的结构进行了比较,揭示了RRW的阻尼效果。由三角脉冲激发和记录的地震地面运动激发的帧位移光谱。呈现了脉冲型,质量比,框架刚度和壁细胞纤细变化的影响。本文表明,与RRW的耦合在抑制框架的最大位移响应时具有混合结果。

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