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首页> 外文期刊>Journal of Applied Fire Science >THEORETICAL AND EXPERIMENTAL STUDIES ON SMOKE TEMPERATURE DECAY IN TRAIN FIRES IN RAILWAY TUNNELS
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THEORETICAL AND EXPERIMENTAL STUDIES ON SMOKE TEMPERATURE DECAY IN TRAIN FIRES IN RAILWAY TUNNELS

机译:铁路隧道火灾中烟气温度衰减的理论和实验研究

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摘要

In tunnels, the spread of the smoke along the ceiling can be seen as one-dimensional. In this study, a theoretical formula was derived to predict the smoke temperature when the fire source was set at the center of the train in a tunnel with uphill slope 9 by establishing a simplified model, considering the heat loss to the wall of the tunnel and the train. It appears that the reduction in temperature down the tunnel of train fires can be fitted by exponential function on the distance, but there are some differences between the decay law above the train and that behind the train. Besides, on the basis of the first extra-long underwater railway tunnel in China, three train fire tests were carried out in a 1:9 reduced-scale model tunnel to study the distribution of smoke temperature along the tunnel, and through the fire tests the unknown parameters of the theoretical equation such as the smoke layer velocity and smoke layer thickness were determined, contributing to the prediction of the smoke temperature decay down the tunnel. Finally, the predictions of the theoretical model were compared with the measured data on smoke temperature in two train fire tests, and the dimensionless excess smoke temperature distributions along the ceiling were compared in tunnels with or without a train. Results show that the temperature curve of the theoretical model agreed well with experimental data of the train fire tests, the model reasonably represents the decay of smoke temperature down the tunnel, and the smoke temperature decays faster in tunnel with a train than that without a train.
机译:在隧道中,烟雾沿着天花板的扩散可以看作是一维的。在这项研究中,推导了一个理论公式,通过建立简化模型,考虑到隧道壁的热损失,并通过建立简化模型,将火源设置在具有坡度为9的隧道的火车中央时的烟气温度。火车。看来,火车起火隧道下方的温度降低可以通过距离的指数函数来拟合,但是火车上方和火车后面的衰减规律之间存在一些差异。此外,在中国第一条超长水下铁路隧道的基础上,以缩小比例为1:9的模型隧道进行了三次火车着火试验,以研究沿隧道的烟气温度分布并通过着火试验确定了理论方程的未知参数,如烟层速度和烟层厚度,有助于预测隧道内烟气温度的衰减。最后,将理论模型的预测结果与两次火车火灾测试中烟气温度的实测数据进行了比较,并比较了有无火车隧道中沿天花板的无量纲多余烟气温度分布。结果表明,理论模型的温度曲线与火车火灾试验的实验数据吻合良好,该模型合理地表示了隧道内烟气温度的衰减,有火车的隧道内烟气的衰减比没有火车的烟气衰减快。 。

著录项

  • 来源
    《Journal of Applied Fire Science》 |2013年第1期|21-39|共19页
  • 作者单位

    Institute of Disaster Prevention Science and Safety Technology Central South University Changsha 410075 PR China;

    Central South University,China;

    Central South University,China;

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  • 原文格式 PDF
  • 正文语种 eng
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