|
|
Field fire test on smoke flow characteristics of V-slope tunnel with longitudinal smoke exhaust |
ZHANG Liangliang1,2
|
1. China Railway Siyuan Survey and Design Group Co., Ltd., Wuhan 430063, Hubei, China; 2. National-Local Joint Engineering Research Center of Underwater Tunnelling Technology, Wuhan 430063, Hubei, China |
|
|
Abstract In order to verify the effectiveness of the overall operation control mode of the ventilation and smoke exhaust system in V-slope highway tunnel during fire, and to prevent the impact of fire smoke on the safety of personnel outside the tunnel entrance, a full-scale on-site physical fire test was carried out in Jinan Huanghe Tunnel to determine the flow characteristics of smoke and the diffusion of smoke from the tunnel entrance under different conditions. The results showed that when a fire occured in V-slope tunnel, the full jet longitudinal smoke exhaust system could operate effectively. When there was no mechanical ventilation, under the joint action of “chimney effect” and natural wind, the smoke spread distance was different under different fire power. The smoke temperature near the fire source was in the form of pulse, and the stratification was not obvious, while the vertical temperature in the far fire source was obvious. In mechanical ventilation, under different fire power, the average time of mechanical wind generated by the fan acting on the flue gas front was 15 s, which could completely control the upstream flue gas counterflow. After the flue gas exits the hole, the diffusion distance was proportional to the longitudinal wind speed. The safety distance of personnel outside the tunnel entrance was defined.
|
Received: 19 April 2023
Published: 20 June 2023
|
|
|
|
[1] |
赖金星, 周慧, 程飞, 等. 公路隧道火灾事故统计分析及防灾减灾对策[J]. 隧道建设, 2017, 37(4): 409-415. LAI Jinxing, ZHOU Hui, CHENG Fei, et al. Statistical analysis of fire accidents in highway tunnels and countermeasures for disaster prevention and reduction[J]. Tunnel Construction, 2017, 37(4): 409-415.
|
[2] |
赵东平, 王峰, 余颜丽, 等. 铁路隧道火灾事故及其规模研究综述[J]. 隧道建设, 2015, 35(3): 227-231. ZHAO Dongping, WANG Feng, YU Yanli, et al. A review of fire accidents in railway tunnels and study on their scale[J]. Tunnel Construction, 2015, 35(3): 227-231.
|
[3] |
中华人民共和国交通运输部. 公路隧道通风设计细则: JTG/T D70/2-02—2014[S]. 北京: 人民交通出版社, 2014.
|
[4] |
郭海丰, 周佳龙, 周山水, 等. 我国隧道纵向排烟研究现状[J].节能, 2021, 40(3): 16-18. GUO Haifeng, ZHOU Jialong, ZHOU Shanshui, et al. Research status of longitudinal smoke exhaust of tunnels in China[J]. Energy Conservation, 2021, 40(3): 16-18.
|
[5] |
李颖臻. 含救援站特长隧道火灾特性及烟气控制研究[D]. 成都: 西南交通大学, 2010. LI Yingzhen. Study on fire characteristics and smoke control of extra-long tunnel with rescue station[D]. Chengdu: Southwest Jiaotong University, 2010.
|
[6] |
LI Y Z, LEI B, INGASON H, et al. Study of critical velocity and backlayering length in longitudinally ventilated tunnel fires[J]. Fire Safety Journal, 2010, 45(6/7/8): 361-370.
|
[7] |
ZHU Hehua, SHEN Yi, YAN Zhiguo, et al. A numerical study on the feasibility and efficiency of point smoke extraction strategies in large cross-section shield tunnel fires using CFD modeling[J]. Journal of Loss Prevention in the Process Industries, 2016, 44: 158-170.
|
[8] |
赵鹏. 点式排烟模式下地铁隧道火灾烟气特性与控制方法研究[D]. 成都: 西南交通大学, 2021. ZHAO Peng. Study on smoke characteristics and control methods of subway tunnel fire under point smoke exhaust mode[D]. Chengdu: Southwest Jiaotong University, 2021.
|
[9] |
王峰, 张路华, 袁松, 等. 高海拔公路隧道火灾烟气控制临界风速研究[J]. 中国公路学报, 2022, 35(5): 153-160. WANG Feng, ZHANG Luhua, YUAN Song, et al. Critical velocity of fire smoke control in high-altitude highway tunnels[J]. China Journal of Highway and Transport, 2022, 35(5): 153-160.
|
[10] |
蒋亚强, 李乐, 廖曙江, 等. 城市隧道火灾烟气最高温升特性的全尺寸试验研究[J]. 工程热物理学报, 2015, 36(10): 2287-2292. JIANG Yaqiang, LI Le, LIAO Shujiang, et al. Full scale tests on the maximum smoke temperature rise in an urban tunnel[J]. Journal of Engineering Thermophysics, 2015, 36(10): 2287-2292.
|
[11] |
蒋树屏, 田堃, 徐湃. 沉管隧道火灾温度场分布规律研究:以港珠澳大桥沉管隧道为例[J]. 隧道建设(中英文), 2018, 38(5): 719-729. JIANG Shuping, TIAN Kun, XU Pai. Distribution laws of fire temperature fields in immersed tunnel: a case study of Hong Kong-Zhuhai-Macao Bridge Immersed Tunnel Project[J]. Tunnel Construction, 2018, 38(5): 719-729.
|
[12] |
曹正卯, 张琦, 陈建忠. 公路隧道车行横通道开启对火灾排烟影响试验[J]. 现代隧道技术, 2019, 56(增刊2): 118-125. CAO Zhengmao, ZHANG Qi, CHEN Jianzhong. Field test on the influence of vehicle trans verse channel opening for fire smoke exhaust in highway tunnels[J]. Modern Tunnelling Technology, 2019, 56(Suppl.2): 118-125.
|
[13] |
刘海龙. 沉管隧道火灾人员安全疏散可用时间模型研究[D]. 重庆: 重庆交通大学, 2021. LIU Hailong. Study on available time model of fire evacuation in immersed tunnel[D]. Chongqing: Chongqing Jiaotong University, 2021.
|
[14] |
王甘雨. 纵向通风条件下大跨度隧道火灾烟气多维运动特性研究[D]. 杭州: 浙江大学, 2022. WANG Ganyu. Study on multi-dimensional motion characteristics of smoke in long-span tunnel fire under longitudinal ventilation[D]. Hangzhou: Zhejiang University, 2022.
|
[15] |
易亮, 霍然, 张靖岩, 等. 柴油油池火功率特性[J]. 燃烧科学与技术, 2006, 12(2): 164-168. YI Liang, HUO Ran, ZHANG Jingyan, et al. Characteristics of heat release rate of diesel oil pool fire[J]. Journal of Combustion Science and Technology, 2006, 12(2): 164-168.
|
|
|
|