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Experimental investigation on carriage fires hazards in the longitudinal ventilated tunnels: Assessment of the smoke stratification features

机译:纵向通风隧道马车的实验调查:烟雾分层特征评估

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In tunnel fires, toxic and harmful smoke is more likely to cause many casualties. The smoke stratification is an important parameter for the smoke control in tunnel fires, which has practical significance for the personal emergency escape in the early stage of tunnel fire. This work focused on the stratification stability of the smoke layer induced by carriage fires in the longitudinal ventilation tunnel. The experiment is carried out in a model tunnel with a size of 22 m (length) x 1.2 m (width) x 0.8 m (height). In this experiment, the anemometers were used to measure to flow shear velocity of the upper smoke layer and the lower layer of cold air. In addition, vertical temperatures of different heights were measured using vertically arranged thermocouple trees. The laser sheet is used to show the buoyant smoke flow, and many methods are used to calculate and compared the thickness of the smoke layer under different longitudinal velocities conditions. Finally, it was found that the buoyant stratification pattern was divided into three regimes, stable stratification, stable stratification but with some vortexes existing and unstable stratification where a strong mixing existed between the upper buoyant smoke flow and the lower air flow. This work is a significant supplement to the buoyant stratification of smoke layer from previous results.
机译:在隧道火灾中,有毒和有害的烟雾更有可能导致许多伤亡。烟雾分层是隧道火灾中烟雾控制的重要参数,对隧道火灾早期的个人紧急逃逸具有实际意义。这项工作主要集中在纵向通风隧道中通过滑架诱导的烟雾层的分层稳定性。实验在模型隧道中进行,尺寸为22米(长度)x 1.2 m(宽度)x 0.8米(高度)。在该实验中,使用风速计测量到上烟层的流动剪切速度和下层冷空气。另外,使用垂直布置的热电偶树测量不同高度的垂直温度。激光片用于显示浮力烟雾流动,并且许多方法用于计算和比较在不同的纵向速度条件下的烟雾层的厚度。最后,发现浮力分层图案分为三个制度,稳定分层,稳定的分层,而是存在一些涡旋存在和不稳定的分层,其中在上部浮力烟雾和下部气流之间存在强混合。这项工作是从先前结果​​的烟雾层的浮动分层的重要补充。

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