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Numerical study of the influence of tunnel wall properties on ceiling jet temperature in tunnel fires

机译:隧道壁特性对隧道射击喷射温度影响的数值研究

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摘要

In tunnel fires, hot gas, called a ceiling jet, propagates beneath the ceiling from the fire source to the tunnel portals. The properties of the ceiling jet must be understood for conducting a fire safety assessment. Heat loss to the tunnel walls (ceiling and side walls) significantly affects the property of the ceiling jet movement in the tunnel. This study aims to estimate the influence of the tunnel wall property on the gas temperature using numerical simulation. Moreover, the correlation between the gas temperature and thermal parameter of the tunnel walls is derived. The simulation results showed that the gas temperature beneath the ceiling is approximately same when the thermal inertias of the tunnel walls are equal. The influence of heat penetration on the gas temperature was significant, and therefore it was important to confirm thermal penetration while conducting the model experiment. Moreover, it was revealed that a linear relationship exists between the gas temperature rise and a dimensionless parameter, which is a function of the Biot number and the Fourier number. The equation expressing this relationship can be used to estimate the influence of the tunnel wall property on the gas temperature.
机译:在隧道火灾中,热气体,称为天花板射流,从火源到隧道门口的天花板下方传播。必须理解天花板射流的性质以进行消防安全评估。隧道壁(天花板和侧壁)的热损失显着影响隧道中天花板射流运动的特性。本研究旨在利用数值模拟估计隧道壁特性对气体温度的影响。此外,推导出隧道壁的气体温度和热参数之间的相关性。仿真结果表明,当隧道壁的热惯性相等时,天花板下方的气体温度大致相同。热渗透对气体温度的影响显着,因此重要的是在进行模型实验时确认热渗透。此外,揭示了气体温度升高与无量纲参数之间的线性关系,这是Biot数和傅立叶号的函数。表达这种关系的等式可用于估计隧道壁特性对气体温度的影响。

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