首页> 外文会议>Annual conference of the Canadian Society for Civil Engineering >SEISMIC PERFORMANCE OF ECCENTRICALLY BRACED FRAMES DESIGNED ACCORDING TO CURRENT CANADIAN SEISMIC PROVISIONS
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SEISMIC PERFORMANCE OF ECCENTRICALLY BRACED FRAMES DESIGNED ACCORDING TO CURRENT CANADIAN SEISMIC PROVISIONS

机译:根据当前加拿大地震规定设计的偏心支撑框架的地震性能

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Eccentrically braced frames (EBFs) have been widely used to resist wind and earthquake loads. Combining the excellent ductility of the moment resisting frames leading into large energy dissipation and the high elastic stiffness of the concentrically braced frames allowing resistance against lateral loads, make this system viable in moderate and high seismic regions. In EBF, the link element acts as the ductile fuse of the system keeping remainder of structure essentially elastic. However, poor design of the links, stiffeners and connection details may lead to inefficient performance of eccentrically braced frame under extreme earthquake loading. This paper studies performance of eccentrically braced frames designed according to current Canadian seismic design guidelines in CSA S16-09. A nonlinear finite element model is first developed. The finite element (FE) model includes both material and geometric non-linearities. The FE model is validated through comparing the finite element analysis results with the corresponding results from a quasi-static test. Finally, nonlinear seismic analyses as well as pushover analysis are conducted to study the performance of a four-storey eccentrically braced frame designed according to current CSA S16-09.
机译:偏心支撑框架(EBFS)已被广泛用于抵抗风和地震载荷。结合抵抗框架的优异延展性导致大的能量耗散和具有抗横向载荷抗性的同心支撑框架的高弹性刚度,使得该系统在中等和高地震区域中可行。在EBF中,连杆元件充当系统的延性熔断器,其保持剩余的结构基本上是弹性的。然而,在极端地震载荷下,链路,加强筋和连接细节的设计不佳,可以导致偏心支撑框架的低效性能。本文研究了根据CSA S16-09中的当前加拿大地震设计指南设计的偏心支撑框架的性能。首先开发非线性有限元模型。有限元(FE)模型包括材料和几何非线性。通过将有限元分析结果与来自准静态测试的相应结果进行比较来验证FE模型。最后,进行非线性地震分析以及推送分析,以研究根据当前CSA S16-09设计的四层偏心支撑框架的性能。

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