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EXPERIMENTAL STUDY ON FLAME BEHAVIOR IN UNDER-VENTILATED TRAIN CAR

机译:通风不足的火车车厢内火焰行为的实验研究

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摘要

In Hong Kong, the number of parallel traders has increased quickly within these years. Passengers bring not only handbags as planned for the subway system four decades ago. There are heavy luggage put in trolleys carried by parallel traders. Goods include milk powder, electronic devices, food and drinks. The increase in fire load will enhance the fire risk. Although the subway management limits the maximum allowable luggage to 23 kg, the combustible amount is still large in train cars. Heat release rate (HRR) is the most important parameter in fire hazard assessment. A 1:15 scale modeling test was carried out to find the HRR in a train car under limited ventilation with parallel goods in this paper. The goods were simulated by a propanol pool fire. HRR for six scenarios with all closed door to all opened door were studied. Mass loss rate of fuel, oxygen consumption, air velocity and fire duration were measured. Ventilation was provided by opening different numbers of doors of the train car. The train car fire can then be ventilation-controlled or fuel-controlled. The burning phenomena of fire in the train under limited ventilation including steady burning, oscillating fire and ghosting flame were studied. It was found that the fire size and duration depended mainly on ventilation when oxygen was very limited. When the amount of oxygen supply reached a critical value (the fire at the decay period with continuous supply of oxygen), the fire tended to be fuel-controlled. Burning characteristics of train fire under limited ventilation were also observed. They were different from fires burning in open area. Oscillating flame, ghosting flame and self-extinction were observed. Results are useful to assess fire hazards associated with parallel trading activities. Three repeated experiments on the captioned subject have been done with average results of all experiments presented.
机译:在香港,在这些年内,并行交易商的数量迅速增加。乘客不仅带来了四十年前为地铁系统计划的手提包。繁重的行李箱用并行交易员携带的手推车。商品包括奶粉,电子设备,食品和饮料。火焰负荷的增加将增强火灾风险。虽然地铁管理限制了23公斤的最大允许行李,但是火车车的可燃量仍然很大。热释放率(HRR)是火灾危险评估中最重要的参数。进行1:15规模建模试验,以在本文的有限通风中找到火车车的HRR。货物由丙醇池火模拟。研究了所有封闭的门的六种情景,都是对所有打开的门进行了研究。测量燃料的质量损失率,氧气消耗,空气速度和火持续时间。通过打开不同数量的火车车,提供通风。然后火车车火可以是通风控制或燃料控制的。研究了在包括稳定燃烧,振荡和重影火焰的限量通风下火车中火灾现象。结果发现,当氧气非常有限时,火焰尺寸和持续时间主要依赖于通风。当氧气供应量达到临界值时(衰变在衰减时段的火灾源于氧气供应)时,火灾往往是燃料控制的。还观察到在有限通风下火车火灾的燃烧特征。它们与开放区域燃烧的火灾不同。观察到振荡火焰,重影火焰和自消灭。结果可用于评估与平行交易活动相关的火灾危险。在标题对象的三个重复实验已经完成了所有实验的平均结果。

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