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Failure progression resistance of a generic steel moment-resisting frame under beam-removal scenarios

机译:移梁情况下普通钢制抗弯框架的抗破坏能力

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摘要

Purpose - The purpose of this paper is to determine the failure progression resistance of the steel moment-resisting frames subjected to various beam-removal scenarios after application of the design earthquake pertinent to the structure by investigating a generic eight-story building. Design/methodology/approach - The structure is first pushed to arrive at a target roof displacement corresponding to life safety level of performance. To simulate the post-earthquake beam-removal scenario, one of the beam elements is suddenly removed from the structure at a number of different positions. The structural response is then evaluated by using nonlinear static and dynamic analyses. Findings - The results show that while no failure is observed in all of the scenarios, the vulnerability of the upper stories is much greater than that of the lower stories. In the next step, the structural resistance to such scenarios is determined. The results confirm that for the case study structure, at most, the resistance to failure progression in upper stories is 58 percent more than that of lower stories. Originality/value - Failure and fracture of beam-to-column connections resulting in removal of beam elements may lead to a chain of subsequent failures in other structural members and eventually lead to progressive collapse in some cases. Deficiency in design or construction process of structures when combined by application of seismic loads may lead to such an event.%Failure; Nonlinear dynamic analysis; Pushover analysis; Progressive collapse; Seismic response; Steel moment-resisting frames
机译:目的-本文的目的是通过对一栋八层楼高的普通建筑进行调查,确定在施加与结构有关的设计地震后,承受各种梁拆除方案的抗弯矩钢框架的抗破坏能力。设计/方法/方法-首先将结构推入,以达到与性能的生命安全水平相对应的目标屋顶位移。为了模拟地震后的梁移除场景,梁构件之一在多个不同位置突然从结构中移除。然后通过使用非线性静态和动态分析来评估结构响应。结果-结果表明,尽管在所有情况下都未观察到故障,但高层的脆弱性要比底层的脆弱性大得多。在下一步中,确定对这种情况的结构抵抗力。结果证实,对于案例研究结构,高层故事对失败进展的抵抗力最多比底层故事对失败进展的抵抗力高58%。独创性/价值-梁到柱连接的失效和断裂导致梁单元的拆除,可能导致其他结构构件的一系列后续失效,并最终在某些情况下导致逐渐倒塌。当通过施加地震荷载而使结构的设计或施工过程中出现缺陷时,可能会导致此类事件。非线性动力学分析; Pushover分析;逐渐崩溃;地震反应;钢制抗弯框架

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