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A numerical study on smoke movement in a metro tunnel with a non-axisymmetric cross-section

机译:非轴对称截面地铁隧道内烟气运动的数值研究

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摘要

In this paper, a numerical study was carried out to analyze the effect of non-axisynunetric (semi-arched) cross-section on the smoke movement in metro tunnel fires by using FDS 6. Two models including Tunnel one (a tunnel with a non-axisymmetric cross-section) and Tunnel two (a traditional tunnel with a symmetrical section) were built. The back-layering length, critical ventilation velocity and temperature distribution were compared and analyzed. Two new prediction models for the dimensionless back-layering length and the critical ventilation velocity in semi-arched metro tunnel fires were proposed, and they were compared with the available data in previous studies and the prediction models proposed by other researchers. For the temperature distribution in Tunnel one, the maximum gas temperature beneath the ceiling appears at the center line of ceiling above the fire, and it is slightly higher than that in Tunnel two under the same fire HRR and the same ventilation velocity because of the less fresh air entrainment. In addition, the likely reasons for the different smoke movement between two tunnels were subsequently explained in this paper.
机译:本文采用FDS 6进行了数值研究,以分析非轴心形(半拱形)横截面对地铁隧道火灾中烟气运动的影响。两种模型包括一个隧道(一个非隧道)。 -轴对称截面)和隧道2(传统的对称截面隧道)建成。对背层长度,临界通风速度和温度分布进行了比较和分析。提出了两种新的半拱形地铁隧道火灾无因次层长和临界通风速度的预测模型,并将它们与以前的研究和其他研究人员提出的预测模型进行了比较。对于一号隧道的温度分布,天花板下方的最高气体温度出现在火灾上方天花板的中心线,并且由于相同的火灾HRR和相同的通风速度,其最高温度略高于第二隧道的最高温度。新鲜空气夹带。另外,本文随后解释了两个隧道之间烟雾运动不同的可能原因。

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