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Smoke control in tunnel with a transverse ventilation system: An experimental study

机译:横向通风系统的隧道烟气控制试验研究

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We carried out a series of experiments in a small-scale tunnel to study the confinement of smoke flow between two exhaust vents located on either side of a buoyant source placed at ground level within a ventilated tunnel. The objective of our study is to quantify the influence of the shape and the position (with respect to the tunnel axis) of the dampers, including the specific case of full-width dampers, on the performance of the transverse ventilation system. To that purpose, we investigated the extent of the backflow length downstream of the dampers, the "confinement velocity" (suppressing the back-layering flow downwind of the vents) and the stability of the smoke stratification. The results show that the best performances are achieved when the width of the dampers is the same as the tunnel width: this minimises the extent of the back-layering flow (for given extraction flow rates) and ensures the stability of the smoke stratification. The worst conditions are observed with square-shaped dampers located on the side of the ceiling, this configuration disturbs the stratification of the smoke layer before the confinement conditions are reached. Subsequently, we evaluated the effect of solid barriers -placed on the tunnel ceiling downstream of same three dampers typologies-on the propagation of the smoke. The results show that these barriers improve significantly the efficiency of system with square-shaped dampers located on the side of the ceiling: they reduce the confinement velocity and enhance the stability of the smoke stratification.
机译:我们在一个小型隧道中进行了一系列实验,研究了位于通风隧道内地面上的浮力源两侧的两个排气口之间的烟流限制。我们研究的目的是量化风门的形状和位置(相对于隧道轴线)(包括全宽风门的具体情况)对横向通风系统性能的影响。为此,我们研究了风门下游的回流长度,“约束速度”(抑制通风口顺风向后流动)的程度以及烟气分层的稳定性。结果表明,当风门的宽度与隧道宽度相同时,将获得最佳性能:这可以最大程度地减少背向层流的范围(对于给定的抽气流量),并确保烟气分层的稳定性。使用位于天花板侧面的方形风门观察到最坏的情况,这种结构在达到限制条件之前扰乱了烟层的分层。随后,我们评估了在三个相同风门类型下游的隧道天花板上设置的固体屏障对烟雾传播的影响。结果表明,这些障碍物显着提高了位于天花板侧面的方形风门的系统效率:它们降低了封闭速度并增强了烟气分层的稳定性。

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