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IGNITION BEHAVIOR OF HYGROSCOPIC MATERIALS IN HUMIDITY CONTROLLED ENVIRONMENT IN SMALL-SCALE TEST APPARATUS

机译:小型试验装置中湿度控制环境中吸水材料的点火行为

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The impact of equilibrium moisture content (4 to 12.5%) on piloted ignition times of hygroscopic material,such as corrugated paper cardboard samples has been measured over a range of incident radiant heat flux (up to60 kW/m2) in the fire propagation apparatus (FPA – ASTM E 2058) under controlled humidity environment(20% to 90% RH). The variation of moisture content in corrugated cardboard is expected to have an effect onthe ignition delay time as well as on the rate of fire growth. The results suggest that for a fixed radiant heatflux, the piloted ignition times increase by about 35% with the increase in moisture content from 4 to 12.5%. Ithas been concluded that, for incident radiant heat flux up to 60 kW/m2, the samples behave as a thermally thinmaterials. A simple thermally thin model is developed based on the energy required for ignition for a given netradiant heat flux delivered to the surface of the sample. This model predicts the time to piloted ignition for agiven net heat flux, thermal properties and moisture content. Based on moisture dependent thermal propertyvalues obtained from the literature, the model has been extended to piloted ignition for thermally thickconditions.
机译:平衡水分含量(4至12.5%)对吸湿性材料引燃时间的影响, 例如瓦楞纸纸板样品已在一定范围内的入射辐射热通量范围内进行了测量(最高 60 kW / m2)在受控湿度环境下的火灾蔓延装置(FPA – ASTM E 2058)中 (相对湿度20%至90%)。瓦楞纸板中水分含量的变化预计会影响 点火延迟时间以及着火率。结果表明,对于固定的辐射热 通量,引燃时间随水分含量从4增加到12.5%而增加了约35%。它 已经得出结论,对于高达60 kW / m2的入射辐射热通量,样品表现为热稀薄 材料。根据给定网络的点火所需能量,开发了一个简单的热薄模型 辐射热通量传递到样品表面。该模型可以预测引燃点火的时间 给定净热通量,热性能和水分含量。基于湿度相关的热性质 从文献中获得的值,该模型已扩展到热厚的引燃 情况。

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