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Fire resistance design of unprotected concrete filled steel hollow sections:Meta-analysis of available furnace test data

机译:未受保护的钢管混凝土空心截面的抗火设计:可用炉试验数据的meta分析

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摘要

Concrete filled steel hollow structural sections are an efficient, sustainable, and attractive option for both ambient temperature and fire resistance design of columns in multi-storey buildings and are increasingly common in modern construction practice around the world. Whilst the design of these sections at ambient temperatures is reasonably well understood, and models to predict the strength and failure modes of these elements correlate well with observations from tests, this appears not to be true in the case of fire resistant design. This paper assesses the statistical confidence in available fire resistance design models/approaches that are used in North America and Europe by performing a meta-analysis which compares the available experimental data from large-scale standard fire tests performed around the world against fire resistance predictions from design codes. It is shown that available design approaches carry a large uncertainty of prediction, suggesting that they fail to properly account for fundamental aspects of the underlying mechanics during fire. Current North American design approaches for CFS columns are shown to be considerably less conservative, on average, than those used in Europe. © 2011 INTERNATIONAL ASSOCIATION FOR FIRE SAFETY SCIENCE.
机译:空心混凝土结构钢构件是多层建筑物中圆柱的环境温度和耐火设计的有效,可持续和有吸引力的选择,并且在全世界的现代建筑实践中越来越普遍。尽管这些部分在环境温度下的设计已被很好地理解,并且预测这些元素的强度和失效模式的模型与测试的观察结果非常相关,但在耐火设计的情况下似乎并非如此。本文通过进行荟萃分析,评估了在北美和欧洲使用的可用耐火设计模型/方法的统计可信度,该分析将全球范围内进行的大规模标准耐火测试的可用实验数据与来自耐火性的预测进行了比较设计规范。结果表明,可用的设计方法具有很大的预测不确定性,表明它们在火灾期间未能适当考虑基础力学的基本方面。平均而言,北美目前使用的CFS色谱柱设计方法要比欧洲使用的方法保守得多。 ©2011国际消防安全协会。

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