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Seismic design and testing of the bottom vertical boundary elements in steel plate shear walls. Part 1: design methodology

机译:钢板剪力墙底部垂直边界单元的抗震设计和测试。第1部分:设计方法

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This research investigates the seismic design method and the cyclic inelastic behavior of the bottom column, also called the vertical boundary element (VBE), in steel plate shear walls (SPSWs). This study consists of two parts. This Part 1 paper discusses the anticipated pushover responses for properly designed SPSWs and the possible inelastic responses of the bottom VBE at various levels of inter-story drift. Considering both the tension field action of the infill panel and the sway action of the boundary frame, this study develops a simplified method to compute the fiexural and shear demands in the bottom VBE. Based on the superposition method, this approach considers various plastic hinge forming locations at different levels of inter-story drift. One of the key performance-based design objectives is to ensure that the top ends of the bottom VBEs remain elastic when the SPSWs are subjected to the maximum considered earthquake. This paper presents the comprehensive design procedures for the bottom VBE. Furthermore, this study conducted cyclic performance evaluation tests of three full-scale two-story SPSWs at the Taiwan National Center for Research on Earthquake Engineering in 2011 to validate the effectiveness of the proposed design methods. The experimental program, cyclic inelastic responses of the SPSWs and bottom VBEs, and numerical simulations are presented in Part 2.
机译:这项研究调查了钢板剪力墙(SPSWs)中底部柱的抗震设计方法和循环非弹性行为,也称为垂直边界单元(VBE)。这项研究包括两个部分。第1部分讨论了适当设计的SPSW的预期推覆响应,以及各个层间漂移水平下底部VBE可能产生的非弹性响应。考虑到填充面板的拉力场作用和边界框架的摇摆作用,本研究开发了一种简化的方法来计算底部VBE的弯曲和剪切需求。基于叠加方法,此方法考虑了不同层间漂移水平下的各种塑料铰链形成位置。基于性能的关键设计目标之一是,当SPSW受最大地震影响时,确保底部VBE的顶端保持弹性。本文介绍了底部VBE的综合设计程序。此外,本研究于2011年在台湾国家地震工程研究中心对三个完整的两层SPSW进行了循环性能评估测试,以验证所提出的设计方法的有效性。第2部分介绍了实验程序,SPSW和底部VBE的循环非弹性响应以及数值模拟。

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