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首页> 外文期刊>Journal of structural engineering >Seismic Design and Analysis of Steel Plate Shear Walls with Coupling
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Seismic Design and Analysis of Steel Plate Shear Walls with Coupling

机译:钢板剪力墙的抗震设计与分析

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Special steel plate shear walls (SPSWs) are an economical seismic lateral force resisting system used throughout North America and Japan. Architectural constraints often encourage the designer to place a pair of planar SPSWs adjacently. A logical extension of the planar SPSW system is to link two SPSWs together with coupling beams to form a SPSW with coupling (SPSW-WC). SPSW-WCs have only been addressed in a limited fashion by prior research, and current code provisions contain no guidance for their design. This research studied the force transfer mechanisms, behavior, and design of SPSW-WCs. A design methodology was developed by extending the capacity design procedures that are currently used for planar SPSWs. Fourteen prototype buildings were designed using this methodology, and representative numerical models were developed. These numerical models were validated and then used to conduct static pushover analysis and earthquake response history analysis. The results of the numerical simulations demonstrate that SPSW-WC systems exhibit robust seismic performance that is equivalent to or better than similar planar SPSW systems, and the SPSW-WC systems improve architectural flexibility and material efficiency.
机译:特殊钢板剪力墙(SPSW)是在北美和日本使用的一种经济的抗地震侧向力系统。建筑上的限制通常会鼓励设计人员将一对平面SPSW相邻放置。平面SPSW系统的逻辑扩展是将两个SPSW与耦合梁链接在一起,以形成具有耦合的SPSW(SPSW-WC)。以前的研究仅以有限的方式解决了SPSW-WC的问题,并且当前的法规未包含其设计指南。这项研究研究了SPSW-WC的力传递机制,行为和设计。通过扩展当前用于平面SPSW的容量设计程序,开发了一种设计方法。使用这种方法设计了14座原型建筑,并开发了具有代表性的数值模型。这些数值模型经过验证,然后用于进行静力推覆分析和地震响应历史分析。数值模拟结果表明,SPSW-WC系统具有与同类平面SPSW系统相同或更好的抗震性能,并且SPSW-WC系统提高了建筑的灵活性和材料效率。

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