结构火灾渐进倒塌研究综述

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Structural Fire Engineering Pub Date : 2021-07-15 DOI:10.1108/JSFE-07-2020-0023
V. M., S. K.S.
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引用次数: 8

摘要

目的本文对火灾引起的结构渐进倒塌以及高温对结构和构件的影响进行了文献综述。美国世界贸易中心发生火灾后,研究人员开始关注高温导致的逐渐坍塌。目前,大多数研究人员都在利用建筑材料的高温行为研究火灾引起的结构渐进倒塌。研究人员一直在进行深入研究,以找到一种更好的策略,利用世界各地可用的规范和指南来防止建筑物遭受结构火灾损坏或倒塌。本文旨在根据研究人员最近在火灾引起的渐进式坍塌方面所做的工作以及寻找坍塌机制所采取的方法,提供更好的理解和分析解决方案。设计/方法/方法本文是通过研究109篇与结构渐进式倒塌和火灾引起的渐进式倒塌有关的不同文献而撰写的。发现在不同的场景中,结构在高温和火灾倒塌条件下的行为得到了识别。独创性/价值本文满足了研究该结构如何在日常生活中承受高温条件的明确需求。
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A review on research of fire-induced progressive collapse on structures
Purpose This paper delineates a literature review on fire-induced progressive collapse on structures and the effect of high temperature on structures and elements. After the occurrences of fire in the World Trade Center in the USA, the researchers started concentrating on the progressive collapse that happens due to high temperature. Currently, most of the researchers are working on fire-induced progressive collapse on structures using high-temperature behavior on materials which are used for construction. The researchers have been doing an intensive study to find a better strategy to prevent the building from structural fire damage or collapse with available codes and guidelines throughout the world. This paper aims to provide a better understanding and analytical solutions on the basis of the recent works done by researchers in fire-induced progressive collapse and methods adopted to find the collapse mechanism. Design/methodology/approach This paper is written by studying different literature papers of 109 related to progressive collapse on structures and fire-induced progressive collapse. Findings The behavior of structures due to high temperature and collapse conditions due to fire in different scenarios is identified. Originality/value This paper fulfills an identified need to study how the structure can withstand high-temperature conditions in our day-to-day lives.
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
期刊最新文献
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