钢板剪力墙
偏转(物理)
放大系数
结构工程
消散
剪力墙
框架(结构)
材料科学
钢架
剪切(地质)
刚度
参数统计
复合材料
工程类
物理
数学
光学
统计
热力学
放大器
光电子学
CMOS芯片
作者
Iman Mansouri,Ali Arabzadeh,Alireza Farzampour,Jong Wan Hu
出处
期刊:Steel and Composite Structures
[Technopress]
日期:2020-01-01
卷期号:37 (1): 91-
被引量:8
标识
DOI:10.12989/scs.2020.37.1.091
摘要
Steel plate shear walls are recently used as efficient seismic lateral resisting systems. These lateral resistant structures are implemented to provide more strength, stiffness and ductility in limited space areas. In this study, the seismic behavior of the multi-story steel frames with steel plate shear walls are investigated for buildings with 4, 8, 12 and 16 stories using verified computational modeling platforms. Different number of steel moment bays with distinctive lengths are investigated to effectively determine the deflection amplification factor for low-rise and high-rise structures. Results showed that the dissipated energy in moment frames with steel plates are significantly related to the inside panel. It is shown that more than 50% of the dissipated energy under various ground motions is dissipated by the panel itself, and increasing the steel plate length leads to higher energy dissipation capability. The deflection amplification factor is studied in details for various verified parametric cases, and it is concluded that for a typical multi-story moment frame with steel plate shear walls, the amplification factor is 4.93 which is less than the recommended conservative values in the design codes. It is shown that the deflection amplification factor decreases if the height of the building increases, for which the frames with more than six stories would have less recommended deflection amplification factor. In addition, increasing the number of bays or decreasing the steel plate shear wall length leads to a reduction of the deflection amplification factor.
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