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Probabilistic assessment of failure time in steel frame subjected to fire load under progressive collapses scenario

机译:渐进式折叠情景下对火焰负荷进行防火负载的钢框架失效时间的概率评估

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Consecutive loads can pose a serious threat to the safety of structures. The sudden removal of load-bearing elements such as columns is one of the causes of the progressive collapse in the structures. The local collapse caused by the sudden removal of the column could affect the response of the structure in the consecutive loads. The fire load is one of the loads that threatens the safety of the structure over the lifetime of the structure. The time a structure can resist the fire load is one of the main factors in the safety of structures against thermal loads. The local damage involved in the structure, including the sudden removal of the load-bearing elements, can affect the stability of the structures against the fire load as two successive events. This research aims to calculate the stability time of the steel frame during the consecutive loading from the sudden removal of column and the subsequent fire. Once designed, the 7-story steel frame is mechanically-thermally modeled and is subjected to the sudden removal of columns in different positions. The static and dynamic pushdown analysis is used to evaluate the structure response in the scenarios of sudden removal of the column. Different modes of thermal load are defined and applied to the structure in the positions of the removed column. Finally, the probability of structural failure is calculated under the fire load after the sudden removal of the column and presented at different times. The results show that the sudden removal of the column will have a great effect on the failure time of the structure and will increase the failure probability of the structure and reduce the failure and collapse time of the structure. Finally, the robustness index is also presented based on the probability of collapse time.
机译:连续负载可能对结构的安全构成严重威胁。突然移除诸如列的承载元件是结构逐渐塌陷的原因之一。由突然移除柱引起的局部塌陷可能会影响连续负载中结构的响应。火焰载荷是威胁结构的寿命在结构的寿命上的负载之一。结构可以抵抗火焰载荷的时间是结构对热负荷的安全性的主要因素之一。结构中涉及的局部损坏包括突然移除承载元件,可以影响结构抵抗火焰负载的稳定性作为两个连续事件。该研究旨在在突然移除柱和随后的火灾期间计算钢框架期间的稳定时间。一旦设计,7层钢框架就机械 - 热建模,并且经受不同位置的突然移除柱。静态和动态推动分析用于评估突然移除柱的情况下的结构响应。定义不同的热负荷模式并施加到移除柱位置的结构上。最后,在突然移除柱后,在火焰负载下计算结构失败的概率,并在不同的时间呈现。结果表明,柱的突然移除对结构的失效时间有很大的影响,并将增加结构的故障概率并降低结构的故障和塌陷时间。最后,还基于崩溃时间的概率呈现鲁棒性指数。

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