首页> 外文会议>International Conference on Behaviour of Steel Structures in Seismic Areas >PROGRESSIVE COLLAPSE OF SEISMIC DESIGNED STEEL MOMENT FRAMES: NONLINEAR STATIC AND DYNAMIC ANALYSIS
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PROGRESSIVE COLLAPSE OF SEISMIC DESIGNED STEEL MOMENT FRAMES: NONLINEAR STATIC AND DYNAMIC ANALYSIS

机译:地震设计钢时刻框架的逐步崩溃:非线性静态和动态分析

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The study investigates the progressive collapse resisting capacity of earthquake-resistant steel moment-resisting frames subjected to column failure. The aim is to investigate whether these structures are able to resist progressive collapse after column removal, that may represent a situation where an extreme event may cause a critical column to suddenly lose its load bearing capacity. Since the response to this abnormal loading condition is most likely to be dynamic and nonlinear, both nonlinear static and nonlinear dynamic analyses are carried out. The load-displacement relationships obtained from pushdown analyses are compared with the results of incremental nonlinear dynamic analyses. The effect of various design variables, such as number of stories, number of bays, level of seismic design load, is investigated. The results are eventually used to evaluate the dynamic amplification factor to be applied in pushdown analysis for a more accurate estimation of the collapse resistance.
机译:该研究调查了经过柱衰竭的抗震钢力矩抗震框架的逐步崩溃抗抗抵抗力。目的是研究这些结构是否能够在逐柱后抵抗逐次崩溃,这可能代表极端事件可能导致临界柱突然失去其承载能力的情况。由于对该异常负载条件的响应最有可能是动态和非线性的,因此进行非线性静态和非线性动态分析。将从下推分析获得的负载 - 位移关系与增量非线性动态分析的结果进行比较。各种设计变量的效果,例如故事数量,海湾数量,地震设计负荷的级别。结果最终用于评估用于推动分析中的动态放大因子,以便更准确地估计塌陷性。

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