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Flame spread over horizontal and vertical wires: The role of dripping and core

机译:火焰散布在水平和垂直导线上:滴落和芯线的作用

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Dripping of polymer insulations in wire fire has a potential risk of igniting nearby objects and expanding the size of fire, but has not been well studied so far. In this experimental study, dripping behaviors during the flame spread over horizontal and vertical polyethylene (PE) insulated wires were investigated without external airflow. Two different wire dimensions - core/wire diameter of 3.5/8.0 and 5.5/9.0 mm and three different PE insulations were tested. To identify effects of the core, wires with solid copper (Cu) core, hollow stainless steel (SS) core, and without core were tested, and both core and insulation temperatures were also measured during the flame spread. Experimental results showed that the high-conductance copper core acted as a heat source downstream to increase the flame-spread rate. However, in the upstream burning zone, the copper core also acted as a heat sink to cool the molten insulation and reduce its mobility. Thus, the copper core extended the residence time of molten insulation inside the flame to facilitate the burning while reducing the dripping. Moreover, for the downward flame spread, the heating by the dripping flow of hot molten insulation dominated over the heating by the core. The downward dripping flow is driven by gravity while limited by the viscous and surface tension forces. Therefore, the limited dripping flow along the cooler copper core reduced the downward flame spread. The trend of results was also found to be insensitive to the type of PE insulation. This is the first time that within a single flame, the simultaneous dual effect of the heat source and heat sink for the wire core was observed, and the influence of dripping on the flame spread over the wire was discovered.
机译:电线着火时聚合物绝缘体的滴落有点燃附近物体并扩大火势的潜在风险,但迄今为止尚未得到充分研究。在本实验研究中,研究了火焰在水平和垂直聚乙烯(PE)绝缘电线上扩散时的滴落行为,而没有外部气流。测试了两种不同的电线尺寸-芯/电线直径为3.5 / 8.0和5.5 / 9.0 mm,并测试了三种不同的PE绝缘。为了确定芯线的影响,测试了具有实心铜(Cu)芯线,中空不锈钢(SS)芯线和不具有芯线的电线,并且还在火焰传播期间测量了芯线和绝缘温度。实验结果表明,高导铜芯作为下游的热源,提高了火焰的蔓延率。但是,在上游燃烧区,铜芯也充当散热器,以冷却熔融绝缘体并降低其流动性。因此,铜芯延长了熔融绝缘体在火焰中的停留时间,从而有助于燃烧,同时减少了滴落。此外,对于向下的火焰蔓延,由热熔融绝缘体的滴流引起的加热在由芯部进行的加热中占主导地位。向下的滴流由重力驱动,同时受到粘性和表面张力的限制。因此,沿着冷却器铜芯的有限滴流减少了向下的火焰蔓延。还发现结果的趋势对PE绝缘材料的类型不敏感。这是第一次在单个火焰中观察到金属丝芯的热源和散热器的同时双重作用,并发现了滴落对火焰在金属丝上扩散的影响。

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