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Experiments to provide the scientific-basis for laboratory standard test methods for firebrand exposure

机译:提供实验依据,以提供有关火灾烙印暴露的实验室标准测试方法的科学依据

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摘要

Firebrand ignition of structures is a major factor in,large outdoor fire spread. Standard laboratory test methods are required to evaluate and compare the performance of different building elements and/or vegetative fuels ability to resist firebrand ignition. It is important to determine full-scale assembly performance when exposed to firebrand showers since weak points in a given assembly can be investigated. Such studies will lead to determining the necessary configuration of building component mock-ups that can be used in standard laboratory test methods. The basis of this paper is to present a comparison of results from full-scale roofing assembly experiments, to mockups using the recently developed experimental capability at National Research Institute of Fire and Disaster (NRIFD). The results demonstrated that similar firebrand penetration behavior/trends were observed for mock-ups of full-scale roofing assemblies, as compared to experiments where full-scale roofing assemblies were used, all under similar wind speeds. The experimental findings presented in this paper represent an important step to develop reduced-scale test methods for firebrand exposure.
机译:建筑物的火标着火是导致室外大火蔓延的主要因素。需要使用标准的实验室测试方法来评估和比较不同建筑元素的性能和/或植物性燃料的抗燃性起火能力。重要的是要确定暴露在喷火花洒下的满量程装配性能,因为可以调查给定装配中的薄弱点。这些研究将导致确定可用于标准实验室测试方法的建筑构件模型的必要配置。本文的基础是使用国家防火与灾难研究所(NRIFD)近期开发的实验能力,对全尺寸屋顶装配实验与实体模型的结果进行比较。结果表明,与使用全尺寸屋面组件的实验相比,全尺寸屋面组件的模型在类似风速下观察到类似的火线渗透行为/趋势。本文介绍的实验结果代表了开发减少火印暴露量测试方法的重要一步。

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