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首页> 外文期刊>International journal of steel structures >Assessment of Post-Earthquake Fire Behavior of a Steel MRF Building in a Low Seismic Region
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Assessment of Post-Earthquake Fire Behavior of a Steel MRF Building in a Low Seismic Region

机译:低地震区MRF钢结构房屋的地震后火灾行为评估

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摘要

Building-level response to post-earthquake fire hazards in steel buildings has been assessed using primarily two-dimensional analyses of the lateral force resisting system. This approach may not adequately consider potential vulnerabilities in the gravity framing system. For this reason, three-dimensional (3D) finite element models of a 10-story case study building with perimeter moment resisting frames were developed to analyze post-earthquake fire events and better understand building response. Earthquakes are simulated using ground motion time histories, while Eurocode parametric time-temperature curves are used to represent compartment fires. Incremental dynamic analysis and incremental fire analysis procedures capture a range of hazard intensities. Findings show that the structural response due to earthquake and fire hazards are somewhat decoupled from one another. Regardless of the level of plastic hinging present in the moment framing system due to a seismic event, gravity column failure is the initiating failure mode in a fire event.
机译:主要使用横向抗力系统的二维分析来评估钢结构建筑物对地震后火灾的建筑物响应。这种方法可能没有充分考虑重力框架系统中的潜在漏洞。因此,开发了具有周边抗力矩框架的10层案例研究建筑物的三维(3D)有限元模型,以分析地震后的火灾事件并更好地理解建筑物的响应。地震是使用地面运动的时间历史来模拟的,而Eurocode参数化的时间-温度曲线则用于表示车厢火灾。增量动态分析和增量火灾分析程序可捕获各种危害强度。研究结果表明,地震和火灾隐患引起的结构响应在某种程度上是相互分离的。不管由于地震事件而在力矩框架系统中存在的塑料铰接水平如何,重力柱故障都是火灾事件中的初始故障模式。

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