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首页> 外文期刊>International Journal of Thermal Sciences >Theoretical and experimental study on longitudinal smoke temperature distribution in tunnel fires
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Theoretical and experimental study on longitudinal smoke temperature distribution in tunnel fires

机译:隧道火灾纵向烟气温度分布的理论和实验研究

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摘要

In order to study the hazard of the hot smoke which is toxic and in high temperature, a new heat balance equation is established to study the heat and mass transfer during smoke propagation process. The heat balance equation can be converted into an inhomogeneous linear differential equation of first order in the end, where the thermal radiation, air entrainment and heat convection are considered. The solution to this differential equation is proposed and the parameters are discussed. Furthermore, the factors that influence the smoke temperature distribution are discussed according to the equation we established. Additionally, in order to examine the solution of smoke temperature distribution in longitudinal direction, a set of small scale experiments are carried out where the variables are the ventilation velocity and heat release rate. Otherwise, a comparison with other tests' data both from small scale and real tunnels is conducted. Results show that the smoke temperature distribution correlates in good agreement with the solution we assumed both in our experiments and other tests, confirming that the theoretical analysis and the application of this formula in determining the smoke temperature distribution in tunnel fires in longitudinal direction and assessing the hazard the hot smoke. The investigation presented here considers only the cases when the ratio of the length to the width of the tunnel is large so that the smoke movement can be considered as One-dimensional Horizontal Spread. (C) 2015 Elsevier Masson SAS. All rights reserved.
机译:为了研究有毒高温烟雾的危害,建立了一个新的热平衡方程,以研究烟雾传播过程中的传热和传质。最终,可以将热平衡方程式转化为一阶不均匀线性微分方程式,其中考虑了热辐射,空气夹带和热对流。提出了该微分方程的解并讨论了参数。此外,根据我们建立的方程式讨论了影响烟气温度分布的因素。另外,为了检查纵向烟气温度分布的解,进行了一组小规模实验,其中变量是通风速度和放热率。否则,将与小规模隧道和实际隧道中的其他测试数据进行比较。结果表明,烟气温度分布与我们在实验和其他测试中假定的解决方案具有良好的相关性,这证实了理论分析和该公式在确定隧道火灾纵向烟气温度分布并评估烟气温度方面的应用。危害热烟。此处进行的研究仅考虑隧道的长度与宽度之比较大的情况,以便将烟气运动视为一维水平扩散。 (C)2015 Elsevier Masson SAS。版权所有。

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