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首页> 外文期刊>Journal of Constructional Steel Research >Steel plate shear walls with outriggers. Part I: Plastic analysis and behavior
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Steel plate shear walls with outriggers. Part I: Plastic analysis and behavior

机译:带支腿的钢板剪力墙。第一部分:塑性分析与行为

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Steel plate shear walls (SPSWs) are ductile and economical energy dissipating systems for buildings located in regions of high seismic risk. In spite of many advantages of SPSWs; however, their overturning stiffness is relatively low, especially when their width is narrow compared to the building height. Therefore, additional flexural stiffness must be provided to the system when designing narrow SPSWs. A logical solution that can be effectively used in SPSW systems is to rigidly connect the beams of adjacent bays to the columns of SPSWs (on both sides) forming an interacting system of SPSW and moment frame in which the adjacent beams act as outriggers resulting in an overall reduction of overturning in the SPSW. However, insufficient information exists on the behavior and efficiency of such structural systems, herein referred to as SPSW with outriggers (SPSW-O). This paper discusses four different potential SPSW-O options that can be used in mid- to high-rise buildings to enhance the flexural stiffness of the system. Plastic mechanisms, ultimate lateral load resistance and overturning stiffness of such systems are investigated, and key design parameters are identified through a combined analytical and numerical investigation. A parameter called the outrigger efficiency factor (OEF) is defined to quantify the contribution of the outrigger system to the overall overturning stiffness of a SPSW-O. Analytical expressions are derived for the lateral load resistance and OEF of the four SPSW-O options, and are then compared with numerical analysis results with reasonable agreement. Furthermore, parametric studies are performed to investigate the influence of a number of parameters on the overall behavior and characteristics of the SPSW-O systems. Parameters subject to investigation include height of the wall, outrigger beam and connection properties. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢板剪力墙(SPSW)是用于高地震风险区域中建筑物的延性且经济的耗能系统。尽管SPSW具有许多优点;但是,其倾覆刚度相对较低,尤其是当其宽度与建筑物高度相比较窄时。因此,在设计狭窄的SPSW时,必须为系统提供额外的抗弯刚度。可以在SPSW系统中有效使用的逻辑解决方案是将相邻舱室的梁刚性连接到SPSW的列(两侧),形成SPSW和弯矩框架的相互作用系统,其中相邻梁充当支腿,从而导致总体上减少了SPSW的倾覆。然而,关于这种结构系统的行为和效率的信息不足,在本文中称为带有悬臂梁的SPSW(SPSW-O)。本文讨论了可以在中高层建筑中使用的四种不同的潜在SPSW-O选项,以增强系统的抗弯刚度。研究了此类系统的塑性机制,极限侧向抗力和抗倾覆刚度,并通过组合的分析和数值研究确定了关键设计参数。定义了一个称为支腿效率因子(OEF)的参数,以量化支腿系统对SPSW-O整体倾覆刚度的贡献。推导了四个SPSW-O选件的侧向载荷阻力和OEF的解析表达式,然后将其与数值分析结果进行比较,并具有合理的一致性。此外,进行了参数研究,以研究许多参数对SPSW-O系统的整体性能和特性的影响。需要调查的参数包括墙的高度,悬臂梁和连接特性。 (C)2017 Elsevier Ltd.保留所有权利。

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