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Seismic Performance of Steel Self-Centering, Moment-Resisting Frame: Hybrid Simulations under Design Basis Earthquake

机译:钢自定心抗弯框架的抗震性能:设计基准地震下的混合模拟

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The behavior of a self-centering moment-resisting frame (SC-MRF) is characterized by the connection gap opening and closing at beam-column interfaces under earthquake loading. A SC-MRF uses high-strength posttensioning strands to precompress the beams to the columns and to close the gaps that develop under earthquake loading, returning the frame to its initial position (i.e., the frame is self-centering). In this study, a beam web friction device is included in each beam-column connection to dissipate energy under seismic loading. Unlike a special steel moment-resisting frame with welded connections (W-SMRF), a SC-MRF can be designed to survive the design basis earthquake (DBE) without structural damage, leading to the potential for immediate occupancy performance, and to suffer only modest damage under the maximum considered earthquake, leading to collapse prevention performance. A 7-bay, 4-story SC-MRF prototype building was designed for a location in the Los Angeles area. A 0.6-scale model of two bays of the SC-MRF building was constructed in the laboratory and subjected to simulated earthquakes using the hybrid simulation method. This paper focuses on the DBE-level performance of this SC-MRF. DBE-level simulation results and performance evaluations are presented. The behavior of the SC-MRF is compared with that of a W-SMRF using nonlinear pushover analysis results.
机译:自定心抗弯框架(SC-MRF)的行为特征是地震荷载作用下梁柱界面处的连接缝隙开合。 SC-MRF使用高强度后张拉线束将梁预压缩到柱子上,并消除在地震荷载作用下形成的缝隙,使框架返回其初始位置(即框架是自对中的)。在这项研究中,梁腹摩擦装置包含在每个梁柱连接中,以在地震荷载作用下消散能量。与具有焊接连接的特殊钢制抗弯框架(W-SMRF)不同,SC-MRF可以设计成能承受设计基准地震(DBE)而不会造成结构损坏,从而有可能立即占用性能,并且仅遭受损坏在考虑的最大地震下的破坏程度不大,从而导致防倒塌性能。为洛杉矶地区的一个地点设计了一个7层,4层的SC-MRF原型建筑。在实验室中建立了一个SC-MRF建筑物的两个海湾的0.6比例模型,并使用混合模拟方法对地震进行了模拟。本文重点介绍此SC-MRF的DBE级性能。介绍了DBE级别的仿真结果和性能评估。使用非线性推覆分析结果将SC-MRF的行为与W-SMRF的行为进行比较。

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