高压细水雾扑灭室内液体燃料火灾的有效性

张长洋, 叶雨熹, 翟旭, 马翰超, 赵金龙

清华大学学报(自然科学版) ›› 2025, Vol. 65 ›› Issue (6) : 1137-1144.

PDF(8022 KB)
PDF(8022 KB)
清华大学学报(自然科学版) ›› 2025, Vol. 65 ›› Issue (6) : 1137-1144. DOI: 10.16511/j.cnki.qhdxxb.2025.22.020
公共安全

高压细水雾扑灭室内液体燃料火灾的有效性

作者信息 +

Effectiveness of high-pressure water mist in extinguishing indoor liquid fuel fires

Author information +
文章历史 +

摘要

为验证高压细水雾扑灭有限空间液体燃料火灾的有效性, 以变压器油池火和汽油池火为研究对象, 设计并搭建了有限空间细水雾灭火实验平台, 研究不同流量细水雾对变压器油池火及汽油池火的灭火效果, 分析细水雾雾通量、羽流温度、油品温度和壁面温度等参数的变化规律。研究结果表明:在相同流量下, 细水雾对变压器油池火的灭火效果明显优于对汽油池火的灭火效果。细水雾灭火效果与细水雾流量密切相关。对于变压器油池火, 随细水雾流量增加, 灭火时间明显缩短。对于汽油池火, 尽管细水雾均无法有效扑灭汽油燃烧, 但大流量细水雾抑制燃烧效果更加显著。细水雾能够持续冷却油品和壁面, 冷却效率与雾通量呈正相关。该研究可为有限空间内重点区域的防火设计提供技术支撑。

Abstract

Objective: High-pressure water mist fire suppression systems have been widely used for liquid fuel storage fire in China. In the event of a leakage and subsequent fire accident involving liquid fuels, the fire can rapidly spread owing to the heat feedback within confined spaces. High-pressure water mist fire suppression systems are favored for their energy efficiency, environmental protection, efficient cooling, and rapid smothering; however, their effectiveness in extinguishing liquid fuel fires requires further investigation. Methods: This study explored the impact of high-pressure water mist at different flow rates on fire suppression for different types of oil pool fires through full-scale experiments. An experimental platform was designed and built specifically for high-pressure water mist fire suppression in confined spaces, focusing on transformer oil and gasoline pool fires to investigate the extinguishing effects of water mist on these fires. Cold spray experiments were carried out to assess water mist flux using a measuring cup collection method, which provided crucial data for fire suppression tests. Simultaneously, fire extinguishing experiments were carried out, with thermocouples arranged near the experimental oil pools and on the walls to analyze variations in key parameters such as plume temperature, oil temperature, and wall temperature. Cameras were also installed to record the combustion process and flame morphology. Results: The experimental results indicate the following: (1) Under identical flow rates, high-pressure water mist is far more effective at extinguishing transformer oil pool fires than gasoline pool fires. For gasoline pool fires, the water mist can control the fire's spread within the confined space; however, even after five minutes of continuous application, complete extinguishment is not achieved. Despite a decrease in the burning area, flame height, and oil temperature, combustion continues. (2) Cold spray experiments reveal that water mist flux in the protected area increases directly with the flow rate of the high-pressure water mist. (3) The effectiveness of fire extinguishment is closely linked to the water mist flow rate. For transformer oil pool fires, higher water mist flow rates significantly shorten the extinguishment times. For gasoline pool fires, increased flow rates strengthen suppression effects but fell short of fully extinguishing the fire. (4) High-pressure water mist can provide continuous cooling to oil and surrounding walls, with cooling efficiency improving as water mist flow rate increases. Conclusions: The findings of this study provide valuable insights into the application of high-pressure water mist for fire suppression in confined spaces. This research offers important technical support for designing fire protection systems in critical areas of confined spaces, emphasizing the need to consider factors such as fuel type, water mist flow rate, and cooling efficiency.

关键词

高压细水雾 / 有限空间 / 液体燃料火灾 / 雾通量 / 灭火有效性

Key words

high-pressure water mist / confined space / liquid fuel fire / water mist flux / fire-fighting effectiveness

引用本文

导出引用
张长洋, 叶雨熹, 翟旭, . 高压细水雾扑灭室内液体燃料火灾的有效性[J]. 清华大学学报(自然科学版). 2025, 65(6): 1137-1144 https://doi.org/10.16511/j.cnki.qhdxxb.2025.22.020
Changyang ZHANG, Yuxi YE, Xu ZHAI, et al. Effectiveness of high-pressure water mist in extinguishing indoor liquid fuel fires[J]. Journal of Tsinghua University(Science and Technology). 2025, 65(6): 1137-1144 https://doi.org/10.16511/j.cnki.qhdxxb.2025.22.020
中图分类号: X932   

参考文献

1
WACHTMEISTER H , HENKE P , HÖÖK M . Oil projections in retrospect: Revisions, accuracy and current uncertainty[J]. Applied Energy, 2018, 220, 138- 153.
2
LI H H , LIU H Q , LIU J H , et al. Spread and burning characteristics of continuous spill fires in a tunnel[J]. Tunnelling and Underground Space Technology, 2021, 109, 103754.
3
刘宏慢. 基于FDS的金华武义"4·17"重大火灾事故数值重构分析[J]. 消防科学与技术, 2023, 42 (12): 1733- 1737.
LIU H M . Numerical reconstruction analysis of Jinhua Wuyi "4·17" major fire accident based on FDS[J]. Fire Science and Technology, 2023, 42 (12): 1733- 1737.
4
汤慧, 郭汝艳. 高压细水雾灭火系统在医院建筑中的应用[J]. 给水排水, 2020, 46 (11): 91- 97.
TANG H , GUO R Y . Application of high pressure water mist system in hospital design[J]. Water & Wastewater Engineering, 2020, 46 (11): 91- 97.
5
江琴, 高爽, 孔晓旭. 高压细水雾灭火系统在地铁列车上的应用分析[J]. 给水排水, 2020, 46 (10): 76-80, 85.
JIANG Q , GAO S , KONG X X . Application analysis of high pressure water mist fire extinguishing system in subway train[J]. Water & Wastewater Engineering, 2020, 46 (10): 76-80, 85.
6
张康年, 孙迎霞, 薛宇雷, 等. 高压细水雾灭火系统在综合管廊中的应用[J]. 给水排水, 2020, 56 (S1): 830-832, 835.
ZHANG K N , SUN Y X , XUE Y L , et al. Application of high pressure water mist extinguishing system in utility tunnel[J]. Water & Wastewater Engineering, 2020, 56 (S1): 830-832, 835.
7
LIU T , YIN X Y , LIU Y C , et al. Influence of water mist temperature approach on fire extinguishing effect of different pool fires[J]. Processes, 2022, 10 (8): 1549.
8
LU J Z , LIANG P , CHEN B H , et al. Investigation of the fire-extinguishing performance of water mist with various additives on typical pool fires[J]. Combustion Science and Technology, 2020, 192 (4): 592- 609.
9
LIU Z G , KIM A K , CARPENTER D . A study of portable water mist fire extinguishers used for extinguishment of multiple fire types[J]. Fire Safety Journal, 2007, 42 (1): 25- 42.
10
周洋, 卜蓉伟, 陈波, 等. 受限空间开口对细水雾灭火有效性影响实验研究[J]. 中国安全生产科学技术, 2017, 13 (11): 135- 142.
ZHOU Y , BU R W , CHEN B , et al. Experimental study on influence of opening in confined space on suppression effectiveness of water mist[J]. Journal of Safety Science and Technology, 2017, 13 (11): 135- 142.
11
杨文涛, 胡馨月, 任晓锋, 等. 基于灰色关联分析的变压器油池火灭火有效性评估[J]. 中国安全生产科学技术, 2023, 19 (3): 177- 182.
YANG W T , HU X Y , REN X F , et al. Effectiveness evaluation on fire extinguishing of transformer pool fire based on grey correlation analysis[J]. Journal of Safety Science and Technology, 2023, 19 (3): 177- 182.
12
陈勇. 氮气-高压细水雾抑制汽油火的特性研究[J]. 武警学院学报, 2017, 33 (2): 5- 9.
CHEN Y . Study on the characteristics of using high-pressure nitrogen gas water mist to suppress gasoline fires[J]. Journal of the Armed Police Academy, 2017, 33 (2): 5- 9.
13
梁天水, 王宗莹, 高坤, 等. 基于cup burner的含铁基添加剂超细水雾灭火有效性分析[J]. 化工学报, 2019, 70 (3): 1236- 1242.
LIANG T S , WANG Z Y , GAO K , et al. Analysis of fire suppression effectiveness of ultra-fine water mist containing iron compounds additives in cup burner[J]. CIESC Journal, 2019, 70 (3): 1236- 1242.
14
蔡昕. 高海拔低气压条件对细水雾灭火性能影响的实验研究[D]. 合肥: 中国科学技术大学, 2009.
CAI X. Experimental study on the effects of low ambient pressure conditions at high altitude on the fire suppression performance of water mist [D]. Hefei: University of Science and Technology of China, 2009. (in Chinese)
15
房玉东, 刘江虹, 廖光煊, 等. 细水雾抑制熄灭障碍物油池火的有效性研究[J]. 中国工程科学, 2006, 8 (2): 75- 79.
FANG Y D , LIU J H , LIAO G X , et al. Experimental studies on fire extinguishment efficiency of water mist with obstruction pool fires[J]. Engineering Science, 2006, 8 (2): 75- 79.
16
邓思玉, 杨克, 纪虹, 等. 细水雾抑制受限空间汽油与酒精火的研究[J]. 消防科学与技术, 2016, 35 (10): 1411- 1414.
DENG S Y , YANG K , JI H , et al. Study on gas fire and alcohol fire suppression with water mist in confined space[J]. Fire Science and Technology, 2016, 35 (10): 1411- 1414.
17
NFPA. Standard on water mist fire protection systems: NFPA 750: 2003 [S]. Quincy: NFPA, 2003: 49.
18
唐海东, 秦俊, 李权威, 等. 细水雾扑灭油池火过程中火焰强化现象的实验研究[J]. 火灾科学, 2010, 19 (2): 68- 73.
TANG H D , QIN J , LI Q W , et al. Experimental investigation of flame enhancement in the process of extinguishing pool fire by water mist[J]. Fire Safety Science, 2010, 19 (2): 68- 73.
19
胡传平, 阙兴贵, 苏琳, 等. 低压细水雾在船舶A类机械处所中的应用研究[J]. 消防科学与技术, 2005, 24 (3): 311- 313.
HU C P , QUE X G , SU L , et al. The application research of low pressure water mist for use in category machinery spaces[J]. Fire Science and Technology, 2005, 24 (3): 311- 313.
20
汪军. 受限空间内高压细水雾灭火机理研究[D]. 淮南: 安徽理工大学, 2016.
WANG J. Study on fire suppression mechanism of high pressure water mist in confined space [D]. Huainan: Anhui University of Science & Technology, 2016. (in Chinese)
21
陈炳元, 杨永斌, 邴震, 等. 细水雾粒径对地下综合管廊电缆舱灭火效果的影响研究[J]. 消防科学与技术, 2019, 38 (6): 832- 836.
CHEN B Y , YANG Y B , BING Z , et al. Study on the influence of fine water mist particle size on fire extinguishing effect of cable cabin in underground utility tunnel[J]. Fire Science and Technology, 2019, 38 (6): 832- 836.
22
吴文翔. 细水雾灭火在磷酸铁锂电池动力船舶上的应用[J]. 船舶工程, 2023, 45 (S1): 393- 397.
WU W X . Water mist fire extinguishing applied onboard electric ships powered by lithium iron phosphate battery[J]. Ship Engineering, 2023, 45 (S1): 393- 397.

基金

国网北京市电力公司科技项目(520223240006)

版权

版权所有,未经授权,不得转载。
PDF(8022 KB)

Accesses

Citation

Detail

段落导航
相关文章

/