李炎锋, 李俊梅, 周允基, 孙育英. 细水雾系统在建筑灭火应用中的理论研究[J]. 北京工业大学学报, 2006, 32(9): 802-807.
    引用本文: 李炎锋, 李俊梅, 周允基, 孙育英. 细水雾系统在建筑灭火应用中的理论研究[J]. 北京工业大学学报, 2006, 32(9): 802-807.
    LI Yan-feng, LI Jun-mei, ZHOU Yun-ji, SUN Yu-ying. Theoretical Study of Water Mist System in Building Fire Extinguishment[J]. Journal of Beijing University of Technology, 2006, 32(9): 802-807.
    Citation: LI Yan-feng, LI Jun-mei, ZHOU Yun-ji, SUN Yu-ying. Theoretical Study of Water Mist System in Building Fire Extinguishment[J]. Journal of Beijing University of Technology, 2006, 32(9): 802-807.

    细水雾系统在建筑灭火应用中的理论研究

    Theoretical Study of Water Mist System in Building Fire Extinguishment

    • 摘要: 为了预测细水雾系统在连续运行和间歇运行方式下有障碍火焰熄灭情况,基于受限空间内的气体成分的质量守恒和空间的能量守恒,建立了一个预测受限空间内细水雾系统灭火效果的瞬态模型.该模型对于受限空间温度、干态氧气体积分数能进行较好的预测研究;在同样的火焰情况下,采用间歇运行方式能提高灭火效果而且减小耗水量.

       

      Abstract: A one-zone transient model is developed for obstructed fire where extinguishments primarily occur as a result of reduction in oxygen concentration due to consumption of oxygen by fire and dilution of oxygen with water vapor. The model is based on mass conservation of gas species and conservation of energy. This model is used to predict the fire extinguishments by water mist system under the continuous and cycling discharge modes. There is a good agreement between numerical and experimental results in air temperature and dry oxygen concentration. In addition, results show that cycling discharge water mist system would give more rapid extinguishment and consume less water for the obstructed fire in comparing with the continuous discharge mode.

       

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