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Firebrand Production from Building Components Fitted with Siding Treatments

机译:带有壁板处理的建筑构件生产的火把

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摘要

Firebrand production from real-scale building components under well-controlled laboratory conditions was investigated. Re-entrant corner assemblies were ignited and during the combustion process, firebrands were collected to determine the size/mass distribution generated from such real-scale building components under varying wind speed. In prior work, a unique ignition methodology was developed to generate firebrands from re-entrant corner assemblies constructed of wood studs and oriented strand board (OSB). In this study, this ignition methodology was applied to re-entrant corners constructed from wood studs/OSB but fitted with actual siding treatments (tar paper and cedar siding) to determine the influence of siding treatments on firebrand generation from wall assemblies. Firebrands were collected with pans filled with water, and then the size and mass of firebrands were measured after drying. The size and mass distributions of firebrands collected in this study were compared with the data from prior component tests as well as the limited studies available in the literature on this topic. Some firebrands were found to be lighter for a given projected area than others, likely produced from cedar siding or tar paper. The effects of applied siding treatments on firebrand production are discussed in detail.
机译:调查了在良好控制的实验室条件下从实际规模的建筑部件中生产的火柴产品。点燃折返角组件,并在燃烧过程中收集火线,以确定在变化的风速下由此类真实比例的建筑构件产生的尺寸/质量分布。在先前的工作中,开发了一种独特的点火方法,以从由木钉和定向刨花板(OSB)构成的凹入角组件产生火印。在这项研究中,这种点火方法被应用于由木钉/ OSB构筑的凹入角,但​​安装了实际的壁板处理(焦油纸和雪松壁板),以确定壁板处理对墙体组件产生火印的影响。用装满水的锅收集火斑,然后在干燥后测量火斑的大小和质量。将本研究中收集到的火印的大小和质量分布与先前的组件测试数据以及文献中有关该主题的有限研究进行了比较。在给定的投影区域,发现某些火把比其他火把更轻,可能是由雪松壁板或柏油纸制成。详细讨论了应用壁板处理对火印产品的影响。

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  • 年(卷),期 -1(80),-1
  • 年度 -1
  • 页码 64–70
  • 总页数 17
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