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A comparative study of statistical methods for critical parameters at tempered glass fallout in an enclosure fire

机译:钢化玻璃辐射在外壳火灾中临界参数统计方法的比较研究

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摘要

Tempered glass is substituting float glass and extensively employed in glass facades and some structural members. However, previous studies primarily focus on float glazing, little is known about the statistical characteristics of tempered glazing fallout in a compartment fire. In particular, the correlation between critical parameters and fallout time of tempered glass is still unknown. Based on the previous experimental data in open literature of 11 tempered glass panels in a compartment model, a comparative analysis was performed to optimize the statistical methods of the breakage behaviour for tempered glazing. The parameters from the previous Wang et al.'s research, such as tempered glass fallout time, the temperature at the center of tempered glass surface, the temperature at the edge of tempered glass surface, the temperature difference between fire exposed and frame covered areas, and total heat flux at tempered glass fallout, were analyzed by 7 different statistical functions, including the Normal, Lognormal, 2-parameter Weibull, 3-parameter Weibull, Exponential, Gamma and Logistic distributions. The results suggested that the most appropriate distributions for tempered glass fallout time, the temperature at the center of tempered glass surface, the temperature at the edge of tempered glass surface, the temperature difference between fire exposed and frame covered areas, and total heat flux at tempered glass fallout are respectively Lognormal, 3-parameter Weibull, 2-parameter Weibull, 3-parameter Weibull, and 3-parameter Weibull distributions. Overall, the 3-parameter Weibull distribution is more suitable for the statistical analysis of fallout behavior of tempered glazing in fires. For critical parameters of tempered glass fallout, the 50 th percentile is close to the most probable percentile. To avoid the fallout of 6 mm thick tempered glazing, the temperature difference between fire exposed and frame covered areas as well as heat flux should be controlled under 319 degrees C and 38.5 kW/m(2). From the correlation analysis between fallout time and each critical parameter, it was established that the surface temperature may give more reliable prediction than total heat flux for tempered glass fallout. (C) 2020 Elsevier Ltd. All rights reserved.
机译:钢化玻璃用浮法玻璃用浮法玻璃用玻璃外墙和一些结构构件进行广泛使用。然而,以前的研究主要关注浮动玻璃窗,对隔室火灾中的回火玻璃辐射的统计特征很少。特别地,临界参数与锻炼玻璃的出辐射时间之间的相关性仍然未知。基于在隔室模型中11升升玻璃板的开放文献中的先前实验数据,进行了比较分析,以优化钢化玻璃破损行为的统计方法。来自以前的Wang等人的参数。的研究,如钢化玻璃辐射时间,钢化玻璃表面中心的温度,温度在钢化玻璃表面处的温度,火灾露天的温度差异和框架覆盖区域并且通过7种不同的统计功能分析了钢化玻璃辐射的总热量通量,包括正常,逻辑,2参数Weibull,3参数Weibull,指数,伽马和物流分布。结果表明,钢化玻璃辐射时间最合适的分布,钢化玻璃表面的温度,温度在钢化玻璃表面处的温度,火灾露面与框架覆盖区域之间的温度差,以及总热量通量钢化玻璃辐射分别是逻辑,3参数Weibull,2参数Weibull,3参数Weibull和3参数Weibull分布。总体而言,3参数Weibull分布更适合对火灾中钢化玻璃的辐射行为的统计分析。对于钢化玻璃辐射的关键参数,50百分位数接近最可能的百分位数。为避免6毫米厚的钢化玻璃的辐射,曝光和框架覆盖区域之间的温差以及热通量应控制在319℃和38.5 kW / m(2)下。从辐射时间和每个关键参数之间的相关性分析,建立了表面温度可以提供比钢化玻璃辐射的总热量的更可靠的预测。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Construction and Building Materials》 |2021年第1期|121033.1-121033.11|共11页
  • 作者单位

    Shanghai Maritime Univ Coll Ocean Sci & Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Coll Ocean Sci & Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Coll Ocean Sci & Engn Shanghai 201306 Peoples R China;

    Shanghai Maritime Univ Dept Math Shanghai 201306 Peoples R China|Shanghai Jiao Tong Univ Sch Math Sci Shanghai 200240 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Tempered glass; Fallout; Failure probability; Correlation analysis; Enclosure fire;

    机译:钢化玻璃;辐射;失效概率;相关性分析;外壳火;

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