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Effect of train fire location on maximum smoke temperature beneath the subway tunnel ceiling

机译:火车着火位置对地铁隧道天花板下方最大烟气温度的影响

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摘要

Smoke temperature beneath tunnel ceiling is one of the most important parameters to determine its fire safety. A double long-narrow space is formed when a subway train stops inside a tunnel, where the smoke movement is quite different from those inside traditional road or train tunnel. The related smoke distributions beneath the tunnel ceiling in this double long-narrow space have been rarely investigated previously. Therefore, through this study, the effect of train fire location on the maximum smoke temperature beneath the subway tunnel ceiling were investigated both numerically and theoretically. Results showed that the smoke temperature beneath the tunnel ceiling is closely related to the spill plume through the train door, which is significantly affected by the fire location. The maximum smoke temperature beneath the tunnel ceiling increases exponentially as the fire source moves away from the train center. A modified model was then developed to predict the maximum temperatures under the spill plume considering various heat release rates and fire locations.
机译:隧道顶棚下的烟气温度是确定其消防安全的最重要参数之一。当地铁列车停在隧道内时,会形成双重的狭长空间,其烟气运动与传统道路或火车隧道内的烟气运动截然不同。以前很少研究过这种在双重狭长空间中隧道天花板下方的相关烟气分布。因此,通过这项研究,从数值和理论上研究了火车着火位置对地铁隧道顶棚下最高烟气温度的影响。结果表明,隧道顶棚下方的烟气温度与通过火车车门的溢流羽流密切相关,火灾的发生位置对烟羽的影响显着。随着火源远离火车中心,隧道顶下的最高烟气温度呈指数增加。然后,开发了一个修改后的模型,以考虑各种放热率和着火位置来预测溢流下的最高温度。

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