火灾和地震后火灾情景下钢框架和钢筋混凝土框架耐久性的比较

M. Moradi, H. Tavakoli, G. Abdollahzadeh
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引用次数: 0

摘要

2017年,伊朗的普拉斯科大厦和伦敦的格伦费尔大厦发生了两起火灾事故。尽管这两种情况都导致了人类悲剧,但地震后的火灾可能会造成更大程度的无法弥补的损失和灾难。工程结构在其使用寿命中会受到不同的载荷,这可能会造成损伤或二次载荷效应。火灾结构的耐久性和稳定性评估以及地震荷载的影响被认为是消防工程中的重要参数。本研究的目的是评估和比较钢筋混凝土和钢框架在火灾荷载和地震后火灾期间的耐久性。在本研究中,两个7层钢和钢筋混凝土框架暴露在火灾荷载下。首先,将钢和混凝土截面置于不同的热载荷下,以比较它们的传热方法。然后,研究了裂缝对混凝土截面传热的影响。然后,将选定的框架暴露在火灾和地震后火灾中。结果表明,地震荷载引起的开裂和强度降低会降低钢筋混凝土框架在地震后火灾场景中的耐久性。然而,钢框架的耐久性与地震荷载没有显著关系,在火灾和地震后火灾场景中,它们的耐久性几乎相同。
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Comparison of Steel and Reinforced Concrete Frames’ Durability under Fire and Post-Earthquake Fire Scenario
Two fire accidents took place in the Plasco Tower in Iran and Grenfell Tower of London in 2017. Although both of them have led to human tragedies, post-earthquake fire can cause more irreparable damages and catastrophes in larger extents. Engineering structures are subjected to different loads during their lifetime, which may cause damage or secondary loading effects. Evaluation of durability and stability of fired structures and the effects of seismic loading are considered to be significant parameters in fire engineering. The aim of this study is to evaluate and compare durability of reinforced concrete and steel frames during fire loading and post-earthquake fires. In this study, two 7-story steel and reinforced concrete frames are exposed to the fire load. At first, steel and concrete sections are put under various thermal loads in order to compare the method of their heat transfer. Then, the effects of crack on heat transfer of concrete sections are studied. Afterwards, the selected frames are exposed to the fire and post-earthquake fires. The results indicated that cracking and strength reduction due to seismic loading can decrease the durability of reinforced concrete frame in post-earthquake fire scenarios. However, the durability of steel frames has no significant relationship with the seismic loading and their durability are almost the same in the fire and post-earthquake fire scenarios.
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来源期刊
CiteScore
1.30
自引率
60.00%
发文量
0
审稿时长
47 weeks
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