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Towards a fragility assessment of a concrete column exposed to a real fire - Tisova Fire Test

机译:对暴露于真实火灾中的混凝土柱进行脆性评估-Tisova防火测试

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摘要

Fires can cause substantial damage to structures, both non-structural and structural, with economic losses of almost 1% GDP in developed countries. Whilst design codes allow engineers to design for the primary design driver, property protection is rarely, if ever, designed for. Quantification and design around property protection has been used for some time in the seismic community, particularly the PEER framework and fragility analyses. Fragility concepts have now started to be researched predominantly for steel-composite structures, however, there has been little to no research into the quantification of property protection for concrete structures, whether in design or in post-fire assessments of fire damaged structures. This paper presents selected results from the thermal environment around, and the thermal response of, a concrete column from a large scale structural fire test conducted in Tisova, Czech Republic, inside a four-storey concrete frame building, with concrete and composite deck floors. From the results of the fire test, assessments of the fire intensity are made and used to model the potential thermal profiles within the concrete column and the implications that high temperature might have on the post-fire response of the concrete column. These thermal profiles are then used to assess the reduction of the columns cross-sectional area and are compared to a quantified damage scale for concrete columns exposed to fire. This analyses presented herein will also show that common methods of defining fire intensity through equivalent fire durations do not appropriately account for the complexities of the thermal and structural response of concrete columns exposed to a travelling fire. (C) 2017 Elsevier Ltd. All rights reserved.
机译:火灾会严重破坏非结构性和结构性结构,发达国家的经济损失将近GDP的1%。尽管设计规范允许工程师为主要的设计驱动程序进行设计,但很少(如果有的话)针对财产保护而设计的。围绕财产保护的量化和设计已经在地震社区中使用了一段时间,特别是PEER框架和脆弱性分析。现在,已经开始主要针对钢复合结构研究易碎性概念,但是,无论是在设计中还是在火灾后评估受损结构时,对混凝土结构物性保护量化的研究很少或没有。本文介绍了在捷克共和国Tisova进行的大规模结构耐火试验中,混凝土柱周围的热环境及其热响应,这些试验是在四层混凝土框架楼房内进行的,混凝土楼房为混凝土和复合地板。根据燃烧测试的结果,对燃烧强度进行评估,并将其用于模拟混凝土柱内的潜在热剖面以及高温可能对混凝土柱的后火响应产生的影响。然后,将这些热曲线用于评估立柱横截面面积的减少,并与暴露于火中的混凝土立柱的量化损伤等级进行比较。本文介绍的这种分析还将表明,通过等效的火灾持续时间定义火灾强度的常规方法不能适当地考虑暴露于行进火灾的混凝土柱的热响应和结构响应的复杂性。 (C)2017 Elsevier Ltd.保留所有权利。

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