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首页> 外文期刊>Earthquake and structures: An International journal of earthquake engineering & earthquake effects on structures >Performance-based seismic design of eccentrically braced steel frames using target drift and failure mode
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Performance-based seismic design of eccentrically braced steel frames using target drift and failure mode

机译:基于性能的偏心支撑钢框架抗震设计,使用目标漂移和失效模式

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摘要

When eccentrically braced steel frames (EBFs) are in the desired failure mode, links yield at each layer and column bases appear plastically hinged. Traditional design methods cannot accurately predict the inelastic behavior of structures owing to the use of capacity-based design theory. This paper proposes the use of performance-based seismic design (PBSD) method for planning eccentrically braced frames. PBSD can predict and control inelastic deformation of structures by target drift and failure mode. In buildings designed via this process, all links dissipate energy in the rare event of an earthquake, while other members remain in elastic state, and as the story drift is uniform along the structure height, weak layers will be avoided. In this condition, eccentrically braced frames may be more easily rehabilitated after the effects of an earthquake. The effectiveness of the proposed method is illustrated through a sample case study of ten-story K-type EBFs and Y-type EBFs buildings, and is validated by pushover analysis and dynamic analysis. The ultimate state of frames designed by the proposed method will fail in the desired failure mode. That is, inelastic deformation of structure mainly occurs in links; each layer of links involved dissipates energy, and weak layers do not exist in the structure. The PBSD method can provide a reference for structural design of eccentrically braced steel frames.
机译:当偏心支撑钢框架(EBFS)处于所需的故障模式时,每个层和柱碱基的连杆屈服似乎塑性铰接。由于基于容量的设计理论,传统的设计方法不能准确地预测结构的无弹性行为。本文提出使用基于性能的地震设计(PBSD)方法来规划偏心支撑框架。 PBSD可以通过目标漂移和故障模式预测结构的结构性变形和控制结构的非弹性变形。在通过该过程设计的建筑物中,所有环节都在地震的罕见事件中消散了能量,而其他成员仍处于弹性状态,随着故事漂移沿着结构高度均匀,将避免弱层。在这种情况下,在地震效果之后,可以更容易地重新恢复偏心支撑框架。通过10层K型EBFS和Y型EBFS建筑物的样本案例研究说明了所提出的方法的有效性,并通过推动分析和动态分析验证。所提出的方法设计的帧的最终状态将在所需的故障模式下失败。也就是说,结构的非弹性变形主要发生在链接中;每个链路涉及散发能量,结构中不存在弱层。 PBSD方法可以提供偏心支撑钢框架的结构设计的参考。

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