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Numerical investigation on the stability of tunnel smoke stratification under the effect of water spray and longitudinal ventilation

机译:水喷雾和纵向通风作用下隧道烟雾分层稳定性的数值研究

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摘要

Tunnel smoke stratification has been reported to exist in the vicinity of a fire source, even under moderate ventilation conditions, which is of importance for occupant evacuation. To understand the effects of a water spray on its stability, a two-layer thermal flow model was built, and a series of scenarios considering different ventilation rates, water spray rates and smoke temperatures were numerically investigated. The ability of the Fire Dynamic Simulation (FDS) tool to predict such a two-phase problem was determined by validating against experimental and zone model data found in the literature. Then the tracer method was adopted to closely observe the smoke and droplet interactions in the two-layer model used in this paper. General effects of the ventilation flows and water spray on the maximum smoke logging distance and its corresponding horizontal displacement were observed. It was found that increasing the ventilation rate promotes the horizontal displacement but weakens the maximum downward distance, while increasing the water spray rate boosts the movements in both directions. Models based on nondimensional analysis for predicting the smoke displacements and the heat loss due to water spray were obtained. The observation of droplets indicates that a water spray globally blocks the horizontal smoke movement, and the upstream part of the water spray contributes 56.7% of the total downward drag forces. This work is helpful in revealing some of the underlying mechanisms behind the interactions of water spray and smoke stratification in the presence of longitudinal ventilation.
机译:据报道,隧道烟雾分层存在于消防源附近,即使在适度的通风条件下,这对乘员疏散的重要性是重要的。为了了解水雾对其稳定性的影响,建造了一种两层热流模型,并在数值上研究了考虑不同通风率,水喷雾速率和烟雾温度的一系列情景。通过对文献中发现的实验和区域模型数据验证来确定火灾动态模拟(FDS)工具预测这种两相问题的能力。然后采用示踪方法对本文使用的两层模型中的烟雾和液滴相互作用进行了密切关注。观察到通风流动和喷水对最大烟雾测井距离及其相应水平位移的一般影响。结果发现,增加通风率促进水平位移,但削弱了最大向下距离,同时增加水喷雾速率在两个方向上提高运动。基于非潜能分析的模型,得到预测烟雾位移和喷水引起的热量损失。液滴的观察表明,全球喷水阻挡水平烟雾运动,水喷雾的上游部分有助于总向下拉力的56.7%。这项工作有助于揭示在纵向通风的存在下水喷雾和烟雾分层相互作用背后的一些潜在机制。

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