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首页> 外文期刊>International Journal of Thermal Sciences >A theoretical and experimental study on the buoyancy-driven smoke flow in a tunnel with vertical shafts
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A theoretical and experimental study on the buoyancy-driven smoke flow in a tunnel with vertical shafts

机译:垂直轴隧道浮动驱动烟雾流动的理论与实验研究

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摘要

In this study, a series of small-scale experiments was carried out in a model scale tunnel with dimensions of 20m (Length) x 2 m (Width) x 1 m (Height) to investigate the characteristics of buoyancy-driven smoke flow in a tunnel with vertical shafts. Different shaft settings and four different longitudinal ventilation velocities were tested in the experiments. A theoretical model for the mass flow rate of buoyancy-driven smoke flow in the shaft was developed and validated. The gas temperature along the tunnel ceiling and smoke stratification were subsequently analyzed and discussed. The results showed that more shafts, greater shaft heights and greater shaft cross sectional areas can significantly increase the smoke extraction rate, and the total smoke mass flow rate in the shafts increases with the increasing ventilation velocity. The local pressure loss coefficient at the shaft inlet may not be a fixed value. An average value of 1.0 for this coefficient was recommended for engineering estimation and design of rectangular-shaped natural shafts. The presence of vertical shaft is beneficial to the smoke stratification and could increase the height of the smoke layer interface, especially for the downstream of the shaft.
机译:在这项研究中,在模型规模隧道中进行了一系列小规模实验,其尺寸为20米(长度)×2m(宽度)x 1 m(高度),以研究浮力驱动的烟雾流动的特性隧道与垂直轴。在实验中测试了不同的轴设置和四种不同的纵向通风速度。开发并验证了轴中浮力驱动烟雾流量的质量流速的理论模型。随后分析并讨论了沿着隧道天花板和烟雾分层的气体温度。结果表明,更多的轴,更大的轴高度和更大的轴横截面积可以显着提高烟雾提取率,并且轴中的总烟雾质量流速随着通风速度的增加而增加。轴入口处的局部压力损耗系数可能不是固定值。建议为该系数为1.0的平均值,用于工程估计和矩形天然轴的设计。垂直轴的存在有利于烟雾分层,并且可以增加烟雾层界面的高度,特别是对于轴的下游。

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