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Fire tests on full-scale steel portal frames against progressive collapse

机译:在全尺寸钢门式门架上进行防火测试,以防止逐渐倒塌

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This paper presents experimental investigations on the collapse behavior of a full-scale 36 m x 12 m steel portal frame exposed to natural fires. Extensive thermal and structural responses of the frame are measured and presented. The frame collapses after 15-min fire exposure with a critical temperature of about 1100 degrees C in the heated column. The measured gas temperature history has a short growth period of 3 min, and reaches its peak temperature of 1100 degrees C within 8 min (400 degrees C higher than standard fire). It is found that a two-zone model can be assumed with uniform temperature distribution in the lower and upper half region, respectively. The temperature gap of these two zones reaches 200 degrees C. The gas temperature at top region decreases due to the deformation-induced opening of roof and fire walls. The surface facing the environment has higher gas temperatures than that inside the fire compartment (more than 200 degrees C). The temperature of rafters beyond the fire compartment reaches 700 degrees C due to the spread hot smoke. Outward bending of the external unexposed column and pulling out of corner column base are observed, which should be prevented in practical design to mitigate fire spread to adjacent buildings and ensure life safety of fire fighters. Numerical simulation is conducted and compared to experimental results which can be used for calibrating numerical models. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文介绍了对暴露于自然火中的36 m x 12 m大型钢门框架的倒塌行为的实验研究。测量并显示了框架的广泛热响应和结构响应。暴露于加热柱中的临界温度大约为1100摄氏度,经过15分钟的火警后,框架会崩溃。测得的气体温度历史记录具有短暂的3分钟生长期,并在8分钟内达到其峰值温度1100摄氏度(比标准火灾高400摄氏度)。结果发现,可以假设一个两区模型,分别在下半区和上半区具有均匀的温度分布。这两个区域的温度差达到200摄氏度。由于变形引起的屋顶和防火墙的打开,顶部区域的气体温度降低。面对环境的表面比燃烧室内部的气体温度更高(超过200摄氏度)。由于散发出的热烟,超出火室的after温度达到700摄氏度。观察到外部未暴露柱向外弯曲并从角柱底座中拉出,在实际设计中应避免这些现象,以减轻蔓延到相邻建筑物的火灾并确保消防人员的生命安全。进行了数值模拟并将其与可用于校准数值模型的实验结果进行比较。 (C)2018 Elsevier Ltd.保留所有权利。

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