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Experimental study on the performance of hybrid ventilation system combining forced longitudinal flow and shaft natural ventilation in tunnels

机译:混合通风系统结合隧道中强制纵向流动和轴自然通风的性能的实验研究

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The hybrid ventilation system combining forced longitudinal flow and shaft natural ventilation has the advantages of both ventilation strategies; for example, it can discharge buoyant smoke through the nearest downstream shaft and can actively constrain backlayering flow. A series of brine-water experiments were conducted to investigate the effects of the longitudinal velocity and shaft dimensions on the performance of the hybrid ventilation system in urban traffic tunnels. A light attenuation technique was used to obtain the width-averaged density distribution in the entire tunnel. Subsequently, ventilation efficiency and the backlayering length were easily determined. The results indicated that the extraction efficiency of the buoyant fluid decreases with increasing longitudinal velocity, particularly when the ventilation shaft is short and the longitudinal velocity is large. Moreover, the existence of a stable backlayering flow is useful for improving the extraction efficiency. For ordinary urban traffic tunnels that allow only passenger cars to pass through, the optimal height and width of the ventilation shaft were determined to be 9 and 7 m, respectively. From the results of the backlayering length and extraction efficiency, we observed that the acceptable longitudinal velocity corresponding to the optimal shaft dimensions approximately varies from 1.8 to 2.3 m/s. The study can provide useful information for the design of such hybrid ventilation systems in urban traffic tunnels.
机译:结合强制纵向流动和轴自然通风的混合通风系统具有通风策略的优点;例如,它可以通过最近的下游轴排出浮力烟雾,并可主动限制反斜流。进行了一系列盐水实验,以研究纵向速度和轴尺寸对城市交通隧道混合通风系统性能的影响。光衰减技术用于获得整个隧道中的宽度平均密度分布。随后,容易确定通风效率和后层长度。结果表明,浮能流体的提取效率随着纵向速度的增加而降低,特别是当通风轴短并且纵向速度大。此外,存在稳定的反向形式的流动可用于提高提取效率。对于允许只有乘用车穿过的普通城市交通隧道,通风轴的最佳高度和宽度分别确定为9和7米。从反斜长度和提取效率的结果,我们观察到与最佳轴尺寸相对应的可接受的纵向速度大致不同于1.8至2.3米/秒。该研究可以提供用于城市交通隧道中这种混合通风系统的有用信息。

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