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1.
含微胶囊添加剂的低压细水雾厨房灭火实验研究   总被引:1,自引:1,他引:0  
通过全尺寸实验研究低压细水雾对抑制和熄灭K类火灾的有效性。选用三种喷头进行灭火实验,并选择灭火效果最好的喷头进行含微胶囊F-500添加剂的细水雾灭火实验。结果表明,低压细水雾对抑制和熄灭食用油火灾具有一定的效果,但容易发生复燃。而添加了微胶囊F-500的低压细水雾,灭火效率较纯细水雾提高约3~10倍,且能有效地避免复燃,同时提高了火场的能见度。不同浓度的F-500溶液具有不同的灭火效果,综合考虑经济性和有效性因素,3%浓度的F-500溶液是厨房低压细水雾灭火系统的最佳灭火介质。  相似文献   

2.
通过全尺寸实验研究低压细水雾对抑制和熄灭B类火灾的有效性。分别使用圆形和方形油盘,以汽油和柴油为燃料进行低压细水雾灭火实验,并进一步研究含微胶囊F-500添加剂的细水雾灭火效果。结果表明,低压细水雾对抑制和熄灭B类火具有一定的有效性,但容易出现灭大火容易灭小火难的现象,并且对于"角落火"难以扑灭。而添加了微胶囊F-500的低压细水雾,灭火效率较纯水细水雾提高约3~5倍,能有效扑灭死角火,同时提高火场能见度。分别用1%、3%、6%的F-500溶液作为灭火介质,实验表明,不同浓度的F-500溶液具有不同的灭火效果。综合考虑经济性和有效性因素:对于大多数B类火灾场合,F-500溶液的最佳配比为1%;对于危险性大或火灾荷载大的场合,微胶囊F-500水溶液的最佳配比为3%。  相似文献   

3.
为研究脉冲细水雾灭火效果和灭火机理,采用FDS软件对连续和脉冲细水雾熄灭受限空间油盘火进行了数值模拟。通过模拟和理论分析确定了脉冲细水雾周期为8 s开启、8 s暂停,并设置了冷却和窒息两种灭火条件,对两种细水雾熄灭不同尺寸的柴油池火进行了研究。结果表明:连续细水雾无法熄灭直径15 cm和20 cm的小尺寸油盘火,对直径25 cm中尺寸油盘火的灭火机理为冷却,对直径为30cm和35 cm大尺寸油盘火的灭火机理为窒息;脉冲细水雾能够熄灭不同尺寸的油盘火,且灭火效率高,火焰熄灭均发生在喷头暂停喷水期间,灭火机理为水雾蒸发稀释氧气而窒息。  相似文献   

4.
细水雾抑制熄灭K类火有效性的实验研究   总被引:6,自引:0,他引:6  
本文通过全尺寸模拟实验研究了细水雾与K类火的相互作用,利用LDV/APV激光多普勒分析仪对细水雾特性进行了测量,分析了细水雾的粒径、速度及雾动量对灭火有效性的影响规律。分别改变喷头类型、工作压力、喷头与火源的垂直距离及喷射角度进行多种工况的灭火实验,结果表明,细水雾的灭火有效性随着压力的增大得到明显提高,喷头的雾化性能直接影响着细水雾的灭火有效性,同时喷射角度及喷射距离也影响着细水雾的灭火有效性。本文为细水雾灭火技术用于厨房环境的火灾防护提供了科学的参考依据和必要的设计参数。  相似文献   

5.
The total flooding application water mist system is a new type of environmentally-friendly fixed extinguishing system. The optimizing design can improve its fire extinguishing performance. At present, the water mist fire extinguishing system in the engine room of the offshore deepwater semi-submersible support platform has not attracted sufficient attention. In this paper, the water mist in the engine room of a deepwater semi-submersible support platform was studied. It contains the effect of water mist on the heat absorption and oxygen insulation of diesel pool fires. The applicable parameters of the water mist fire extinguishing system were also determined. Moreover, based on the shielding of the fire source in the engine room and the different requirements for water mist extinguishing parameters, a hierarchical multi-parameter combined high-pressure water mist fire extinguishing system was proposed. In the full-scale experimental engine room model, according to the fire extinguishing experiments for diesel pool fires with different areas, this kind of hierarchical multi-parameter water mist system is very effective on shielded and non-shielded fires. In addition, it is still effective even in a non-closed environment coupled with smoke exhausting.  相似文献   

6.
为对比不同灭火系统扑灭变压器油池火灾有效性,提升变压器油池火灭火效能,从效能评估工具、灭火临界参数、行业法规中提取并确定变压器油池火灭火有效性评估指标集,包括3个观测变量,6个具体指标。采用Otsu’s算法处理火灾图像确定火焰面积,通过层次分析法确定各观测变量和具体指标权重,应用灰色关联法构建变压器油池灭火有效性评估模型。以水喷雾、细水雾、泡沫-水喷雾以及泡沫-细水雾扑灭变压器油池火为例,分别计算4种不同灭火系统下的灭火有效性。研究结果表明:灭火方案有效性为泡沫细水雾(1.000)>纯水细水雾(0.653)>泡沫水喷雾(0.447)>纯水水喷雾(0.333)。该评估模型可以将消防监测终端采集的消防大数据与人工智能技术有效结合,有助于提升变压器消防安全管理智能化水平。  相似文献   

7.
田兵  陈明毅  刘家豪  丁超  汪箭 《火灾科学》2015,24(3):136-141
热释放速率是描述火灾现象的重要参数,可以表征火灾发展的强烈程度。利用大尺寸的热释放速率实验测量平台开展细水雾对不同种类油池火灭火效率的实验研究,同时分析细水雾对燃烧产物一氧化碳含量的影响。结果表明,热释放速率曲线能直接反映出细水雾对火源的作用,细水雾作用下三种燃料的热释放速率均被有效抑制,且细水雾的流量越大,对油池火的灭火效果越好。燃烧产物一氧化碳在施加细水雾时出现陡增,表明细水雾隔绝氧气,造成不完全燃烧或者燃烧熄灭。  相似文献   

8.
为验证压缩空气泡沫扑救大型火灾的有效性,分别开展225 m2甲醇和450 m2重油油池火灭火实验,采用压缩空气泡沫系统搭配消防机器人远距离喷射压缩空气泡沫的灭火方法,分析该方法的灭火效能。研究结果表明:压缩空气泡沫系统可以实现远距离灭火,压缩空气泡沫的施加可以有效降低油池内燃料温度、火场温度以及油池附近热辐射强度。在压缩空气泡沫系统混合液流量为3 900 L/min时,距离油池边缘29 m条件下扑救450 m2全尺寸重油火灾的灭火时间为130 s,灭火阶段水和3%泡沫液的消耗量分别为8 233 L和273 L;在压缩空气泡沫系统混合液流量为3 600 L/min时,距离油池边缘不小于35 m条件下扑救225 m2全尺寸甲醇火灾的灭火时间为231 s,灭火阶段水和6%泡沫液的消耗量分别为12 962 L和808 L。研究结果对提升扑救大型油池火灾的作战能力具有重要意义。  相似文献   

9.
障碍物影响下细水雾灭火有效性的研究具有重要的意义。研究了障碍物与火焰的相对位置、细水雾工作压力、喷头距离火焰垂直距离及水平距离等因素对灭火有效性的影响,以及细水雾作用下火灾烟气中一氧化碳、二氧化碳及氧气浓度的变化规律等。结果表明:高压细水雾可以有效扑救部分有障碍物遮挡的油池火,同时喷头距离火焰的水平距离和垂直距离也显著影响着细水雾的灭火速度;高压细水雾在灭火过程中火场的氧气浓度明显升高,二氧化碳和一氧化碳浓度明显降低;细水雾工作压力较低时,一氧化碳浓度反而有所增加。  相似文献   

10.
Through a series of full-scale fire experiments and numerical simulations, the effectiveness of water mist system on wind generator could be estimated, and compared with fire parameters, such as exposed or unexposed fire sources, number of nozzles, un-sheltered or sheltered fire sources, and fire source location.The experimental study found that the position of the water mist nozzles and whether the flames inside the oil pan are covered have a significant influence on overall extinguishing efficacy. The water mist system proved to have sound effectiveness on fire suppression in wind generators with sheltered fire source.According to FDS simulations of water mist systems, the simulated temperature curve declined more significantly than that for the actual measurements, indicating that the cooling effect of the simulated water mist was better. However, simulations were used for a situation where water mist was unable to directly extinguish the fire. Analysis of the simulated airflow showed that an opening caused the water to discharge outwards and the airflow was disturbed by the outside; thus, the extinguishing effect was poorer. There was less water with a sheltering object, and thus the extinguishing effect was poorer.  相似文献   

11.
Water mist, a replacement for Halon gaseous agents in fire fighting, has been studied for decades. However, the fire-extinguishing reliability of water mist is debated. For example, there are significant differences in extinguishing times between tests conducted under the same conditions, and water mists have difficulty extinguishing small fires. To date, no study of the probability distribution of extinguishing times has been reported. In this study a statistical analysis of the extinguishing time distribution of pool fires extinguished using water mist is presented. The fire sources were circular/square stainless steel pans with gasoline, diesel, ethanol or daqing RP-3 as fuel. Two types of extinguishing scenarios were observed. In one situation, the fire was extinguished via a blow off process, when the flames had not yet been suppressed. Flame cooling is the primary fire extinguishing mechanism; the mass loss rate and combustion heat of the fuel are two key factors. In the other situation, the fire was initially suppressed and subsequently extinguished after a long suppression stage. Surface cooling is the primary fire extinguishing mechanism; the flash point of the fuel is the key factor.  相似文献   

12.
针对渔船火灾危险性进行分析,辨识火灾危险源,通过实验模拟横向对比几种灭火介质的灭火效果。实验中以柴油油盘火模拟渔船早期火灾,并根据发动机舱的特点设置了喷雾火模拟发动机舱火灾,并通过对比几种不同灭火剂的灭火效果得出细水雾灭火有效性能良好,具有应用于实践的可行性,在渔船灭火技术应用中前景广阔的结论。  相似文献   

13.
水成膜泡沫在油类表面的窒息作用是扑灭油类火灾的重要机理之一,针对自行开发的快速型泡沫灭火剂开展了其对油池火的窒息灭火特性研究。首先通过老化试验测试了泡沫液的热稳定性,然后对比了不同成分泡沫液在25#变压器油表面的铺展特性,之后研究了不同发泡倍率和成分的泡沫液对油池火的窒息灭火效果及影响规律。研究发现,铺展性能不佳的泡沫液会逐渐丧失窒息能力,而铺展性能优异的泡沫液能持续发挥窒息作用。提升泡沫液热稳定性有利于在油面形成稳定的液膜,隔绝氧气并降低可燃分子挥发速率。此外,发泡倍率较低的泡沫液的流动性更强,在相同液体流量条件下低倍数泡沫的窒息灭火效果更优。自研的快速型泡沫灭火剂在热稳定性和铺展性能两方面均具备优良的性能,因此其窒息灭火效率和抗复燃能力优于现有的大部分同类泡沫灭火剂。  相似文献   

14.
细水雾的喷射方式对其灭火效果存在一定的影响。利用时间继电器控制细水雾灭火系统的启停,开展了连续式和脉冲式两种喷射方式的细水雾对开门与关门两种通风条件下不同燃料油池火分别进行抑制的试验研究。结果表明:在试验条件下,对于开门状态下连续式细水雾难以扑灭的汽油池火,脉冲式细水雾能显著提高灭火效果;对于连续式细水雾容易扑灭的柴油池火及关门状态下的汽油池火,脉冲式细水雾不能提高灭火效果,且灭火时间和用水量均有所增加;对于细水雾难以扑灭的酒精池火,连续式细水雾和脉冲式细水雾均未有效扑灭火焰。  相似文献   

15.
压缩气体射流与水射流混合后所产生的气-水两相射流,可获得连续、高速喷射的细水雾,水滴粒径小,穿入火焰的能力强,可沿水平方向射入火焰中,比喷淋方式水雾灭火可节省90%的用水量,缩短了灭火时间,发挥了细水雾的灭火优势,是细水雾灭火技术的最新发展。所制成的便携式、车载式、固定式的两相射流细水雾灭火装置,可扑灭多种类型的火灾,尤其适合用于扑灭有人存在的空间的火灾。以涡喷发动机为喷射动力的气-水两相射流喷射系统,制成了超大功率的喷射雾状水的消防装备,大幅度提高了控制油、气大火火势的能力和灭火效率。气-水两相射流还有稀释、吹散泄漏出的可燃性气体,防止其点燃的功能,适合于在天然气和有毒有害气体泄漏事故抢险救援中使用。将压缩气体和泡沫液按比例混和后喷射的压缩空气泡沫喷射系统,产生了喷射“干泡沫”的消防车,使灭火用水的利用率提高了8倍,被称为是世界最先进的泡沫灭火技术。气-水两相射流促进了灭火技术革命性的发展,新型的气-水两相射流消防装备不断涌现,展示出了广阔的应用前景。  相似文献   

16.
泡沫-细水雾在全尺寸变压器灭火实验中展现出高效灭火性能。纯水细水雾具有冷却效果好、热辐射阻隔能力强的特点,但添加泡沫灭火剂后对其冷却及热辐射阻隔特性的影响机制尚不明确。对泡沫-细水雾和纯水细水雾的冷却与热辐射阻隔特性进行了对比实验,并基于雾特性测试结果对相应性能的差异进行了分析。发现添加泡沫灭火剂后能降低水雾的粒径,从而令泡沫-细水雾的冷却和热辐射阻隔性能优于纯水细水雾。此外,泡沫灭火剂中的阻燃物质也是加速火焰熄灭的重要因素。研究结果可为变压器灭火系统选择、泡沫-细水雾系统工况参数优化等方面提供理论指导。  相似文献   

17.
刘宇芳  姚斌  王文伟  舒雅 《火灾科学》2015,24(3):142-150
高架仓库的建筑和储存特点导致其火灾危险性远大于普通仓库,因此高架仓库的消防系统设计研究日益受到重视。目前,高架仓库主要采用的是ESFR自动灭火系统,细水雾灭火系统的应用还较少。通过低压细水雾灭高架仓库实体火灾的实验,记录喷头工作压力、实验点火时间、开始喷水时间、灭火时间及燃烧物的损失量,分析温度、热辐射强度以及喷头流量数据。结果表明:在限定的仓库高度以及货架高度条件下,低压细水雾灭火系统能够有效保护高架仓库,且较其它水喷淋灭火系统用水量少,造成货物的水渍损失小。  相似文献   

18.
为改善普通碳酸氢钠干粉灭火剂(BC干粉)抑制食用油火时抗复燃性较差的不足,选择聚磷酸铵、溴化钾和一水合草酸钾作为添加剂,与普通BC干粉灭火剂混合配制成复合干粉灭火剂。通过全尺度模拟试验研究各种复合粉体对食用油火的灭火效果及其抗复燃性能。结果证明,普通BC干粉与一水合草酸钾复配而成的复合粉体针对食用油火的灭火效果和抗复燃性能在几种粉体中最佳。根据试验数据和各粉体的理化特性,对4种粉体的灭火效果差异作了详细的分析和讨论。  相似文献   

19.
为了研究脉冲细水雾的关键参数,采用FDS软件对不同周期的脉冲细水雾熄灭受限空间油盘火进行了数值模拟,分析了脉冲周期的优化设置、细水雾的灭火效果和灭火机理。根据模拟结果进行参数设置,建立了脉冲细水雾试验平台,对脉冲细水雾熄灭不同尺寸油盘火进行了试验研究,并与数值模拟结果对比。研究表明:脉冲细水雾的最佳周期应满足喷头开启时间接近雾滴降至燃料表面的时间,暂停时间接近雾滴的生存时间;脉冲细水雾能熄灭不同尺寸火源,其灭火效果优于连续细水雾,雾滴蒸发效率更高,灭火机理为水雾蒸发稀释氧气而窒息灭火。  相似文献   

20.
Spill fires are common during oil product storage and transportation after a loss of containment. Since the burning fuel is moving and the fuel depth is quite shallow, the burning rate in a spill fire is different from that of a pool fire with a static burning zone. Unlike pool fires, which have been studied for decades and have well-established correlations for burning rate, research on spill fires is inadequate. In this paper, continuously released n-heptane spill fire experiments were conducted on open water surfaces with varying fuel discharge rates. The pool diameters were measured, and the spill fire burning rates were estimated based on a dynamic balance between fuel supply and combustion. The burning rates in n-heptane pool fires from the literature were reviewed and compared with the estimated burning rates in spill fires of the same dimension. The spill fire burning rate was found to be close to that in a pool fire during the initial burning phase but lower than that in a bulk burning pool fire and that in a “fuel-level-controlled” pool fire. The distinction between the burning rates of spill fires and pool fires is explained by the heat balance analysis of the fuel layer. A model for the spill fire burning rate was proposed accordingly. The results calculated with the presented model are closer to the measured data than those calculated with pool fire models.  相似文献   

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