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Pool fire suppression performance by twin-fluid water mist under low pressures in an altitude chamber

机译:高压室低压下的双流体水雾池池池抑制性能

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摘要

Fire suppression tests using low pressure twin-fluid water mist under low pressure environments were carried out to exam the performance of water mist systems at low pressure environments. The experiment results show that the suppression time gets shorter for lower chamber pressure, and relevant total weight of water and nitrogen used decreases as the chamber pressure gets lower. For the case of 30-cm diameter pool fire, the suppression times are 20.19, 7.5, and 2.24 under the chamber pressure of 60, 38, and 24 kPa, respectively. In case of a cargo compartments fire, it is suggested to open the ventilation valve of the cargo compartment at a high cruising altitude to relieve pressure, so as to achieve rapid fire suppression. When a fire happens at the position off the center below the water mist nozzle, the water mist suppression effects will be weakened. The fire size has little effects on the fire extinguishing process under pressure of 24 kPa. Under the critical atomization condition with the pressure differential between the inlet and outlet of the nozzle for water as 0.05 MPa (5.04 L/min), and the pressure differential for nitrogen as 0.10 MPa (10.97 L/min), the suppression time is the shortest as 18.66 seconds.
机译:在低压环境下使用低压双流体水雾进行灭火试验,以考虑低压环境中的水雾系统的性能。实验结果表明,抑制时间较低的腔室压力较短,随着腔室压力降低,所使用的水和氮的相关总重量降低。对于直径30厘米的池火的情况,抑制时间分别为20.19,7.5和2.24,分别为60,38和24kPa。如果是货舱火灾,建议在高巡航高度下打开货舱的通风阀以缓解压力,从而实现快速的防火抑制。当火灾在水雾喷嘴下方的位置发生火灾时,水雾抑制效果将被削弱。火焰大小对24 kPa压力下的灭火过程几乎没有影响。在临界雾化条件下,用喷嘴的入口和出口之间的压差为0.05MPa(5.04L / min),以及氮气的压差为0.10MPa(10.97L / min),抑制时间是最短为18.66秒。

著录项

  • 来源
    《Process safety progress》 |2021年第1期|e12155.1-e12155.14|共14页
  • 作者单位

    State Key Laboratory of Coal Resources and Safe Mining China University of Mining & Technology (Beijing) Beijing China School of Emergency Management and Safety Engineering China University of Mining & Technology (Beijing) Beijing China;

    School of Emergency Management and Safety Engineering China University of Mining & Technology (Beijing) Beijing China;

    School of Emergency Management and Safety Engineering China University of Mining & Technology (Beijing) Beijing China;

    Institute of Public Safety Research Tsinghua University Beijing China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    fire suppression; halon replacement; low pressure; pool fire; twin-fluid water mist;

    机译:灭火;哈龙替代;低压;池火;双流体水雾;

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