Wang Yanfu, Jiang Juncheng, Zhu Dezhi
Nanjing University of Technology, Jiangsu Key Laboratory of Urban and Industrial Safety, Nanjing 210009, China.
J Hazard Mater. 2009 Jul 15;166(1):469-77. doi: 10.1016/j.jhazmat.2008.11.056. Epub 2008 Nov 27.
In order to research the fire characteristic under natural ventilation conditions in tunnels with roof openings, full-scale experiment of tunnel fire is designed and conducted. All the experimental data presented in this paper can be further applied for validation of numerical simulation models and reduced-scale experimental results. The physical model of tunnel with roof openings and the mathematical model of tunnel fire are presented in this paper. The tunnel fire under the same conditions as experiment is simulated using CFD software. From the results, it can be seen that most smoke is discharged directly off the tunnel through roof openings, so roof openings are favorable for exhausting smoke. But along with the decrease of smoke temperatures, some smoke may backflow and mix with the smoke-free layer below, which leads to fall in visibility and is unfavorable for personnel evacuation. So it is necessary to research more efficient ways for improving the smoke removal efficiency, such as early fire detection systems, adequate warning signs and setting tunnel cap.
为研究有顶部开口隧道在自然通风条件下的火灾特性,设计并开展了隧道火灾全尺寸试验。本文给出的所有试验数据可进一步用于验证数值模拟模型及缩尺试验结果。本文给出了有顶部开口隧道的物理模型及隧道火灾的数学模型。使用CFD软件模拟了与试验相同条件下的隧道火灾。从结果可以看出,大部分烟雾通过顶部开口直接排出隧道,因此顶部开口有利于排烟。但随着烟雾温度降低,部分烟雾可能会回流并与下方无烟层混合,导致能见度下降,不利于人员疏散。所以有必要研究提高排烟效率的更有效方法,如早期火灾探测系统、足够的警示标志以及设置隧道帽。