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Seismic behavior of coupled steel plate shear walls with simple boundary frame connections

机译:具有简单边界框架连接的耦合钢板剪力墙的抗震性能

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The coupled steel plate shear wall (C-SPSW) configuration has been investigated by researchers as a means of improving the overturning stiffness and architectural flexibility of SPSW structures. While C-SPSWs have been shown to exhibit excellent seismic performance, the fabrication cost associated with the high number of moment-resisting connections used in such systems is a potential detraction to their use as an economical solution. Past research has shown that the hysteresis response of SPSWs with simple frame connections is significantly pinched, and as such, most seismic codes prohibit their use in high seismic areas. However, when used in the C-SPSW configuration, a dual system is formed in which the coupling beams not only improve resistance to overturning but also provide substantial lateral strength and energy dissipation capacity. This paper presents an exploration of the potential to improve the economy of C-SPSWs by using the simple boundary frame connections. First, employing the principles of plastic analysis, an attempt is made to quantify the contribution of the coupling beams to the overall lateral load resistance of the system. Then, to evaluate the seismic performance of such C-SPSW systems and allow for the comparison with that of the C-SPSWs with rigid frames, several prototypes are designed and analyzed using a series of nonlinear response history and pushover analyses. The results indicated that the C-SPSWs with simple boundary frames exhibited satisfactory seismic performance comparable with that of the C-SPSWs with rigid frames under both the 10/50 and 2/50 hazard levels, while allowing for reduced fabrication costs.
机译:研究人员已经研究了耦合钢板剪力墙(C-SPSW)的构型,以提高SPSW结构的倾覆刚度和建筑柔韧性。尽管已证明C-SPSW具有出色的抗震性能,但与此类系统中使用的大量抗力矩连接相关的制造成本可能会损害其作为经济解决方案的使用。过去的研究表明,具有简单框架连接的SPSW的滞后响应会受到严重挤压,因此,大多数地震法规禁止在高地震地区使用它们。但是,当用于C-SPSW配置时,会形成一个双重系统,其中耦合梁不仅提高了抗倾覆性,而且还提供了相当大的横向强度和能量耗散能力。本文介绍了通过使用简单边界框架连接来改善C-SPSW经济性的潜力。首先,利用塑性分析原理,试图量化耦合梁对系统整体侧向载荷阻力的贡献。然后,为评估此类C-SPSW系统的抗震性能并允许与具有刚性框架的C-SPSW进行比较,使用一系列非线性响应历史和推覆分析设计并分析了多个原型。结果表明,在危险等级为10/50和2/50的情况下,具有简单边界框架的C-SPSW的抗震性能可与具有刚性框架的C-SPSW相比,同时降低了制造成本。

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