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Water spray flow rate effect on smoke temperature distribution under the ceiling in tunnel fires with longitudinal ventilation

机译:纵向通风隧道火灾中喷水流量对天花板下烟气温度分布的影响

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摘要

A series of fire tests with various water spray flow rates were conducted in a small-scale longitudinal ventilated tunnel to investigate the influence of flow rates of a water spray system and different longitudinal wind speed on maximum smoke temperature and longitudinal smoke temperature distribution. Then, the test data for the case without the water spray system were compared with previous studies and agreed well with previous model which overestimates smoke temperature of the cases with the water spray. Results show that the maximum smoke temperature decreases and the longitudinal smoke temperature decays faster with the increase of water spray flow rate. Thus an improved model for maximum smoke temperature is proposed by introducing a modified coefficient lambda representing the water spray flow rate effect. It was found that longitudinal smoke temperature decays exponentially and the decay coefficient increases with increasing water spray flow rate. Therefore considering the effect of water spray flow rate, a modified coefficient K-down is introduced into the exponential model to predict the longitudinal smoke temperature distribution.
机译:在小型纵向通风隧道中进行了一系列不同喷水流量的燃烧试验,以研究喷水系统的流量和不同的纵向风速对最大烟气温度和烟气纵向温度分布的影响。然后,将没有喷水系统的情况下的测试数据与先前的研究进行了比较,并与先前的模型相吻合,后者高估了喷水系统的烟雾温度。结果表明,随着喷水流量的增加,最高烟温降低,纵向烟温下降更快。因此,通过引入代表喷水流量影响的修正系数λ,提出了一种最高烟气温度的改进模型。研究发现,纵向烟雾温度随喷水流量的增加呈指数衰减,衰减系数增大。因此,考虑喷水流量的影响,将修正系数K-down引入指数模型以预测纵向烟气温度分布。

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