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Full-scale experiment on smoke propagation in metro station tunnel fire under opening the platform screen doors

机译:打开平台屏幕下的地铁站隧道火灾中烟雾传播的全面试验

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摘要

The study conducted full-scale fire experiments in a representative subway station tunnel to investigate the law of smoke propagation, and three typical ventilation conditions were designed. Under opening the platform screen doors (PSD), the fuel pan was placed at the centerline of the tunnel, and the temperature profile was measured by a series of thermocouples. The vertical temperature distribution, longitudinal temperature distribution and smoke layer height were analyzed based on the measured data in the field. The results showed that the fire-induced smoke propagation was affected significantly by the longitudinal airflow. Under the natural ventilation, the temperature near the fire region was relatively low, and the smoke layer height varied slightly with the distance. Under the mechanical ventilation, the over track exhaust (OTE) system was activated by default, and the mode of the tunnel ventilation fan (TVF) system was changed. When the TVF system in the mode of supply in the A-end and exhaust in the B-end, the smoke distributed within the range of X = 38.5 to 5.5 m. At the location of X = 38.5 m, the smoke layer height was approximately 2 m, which had an impact on the evacuation. When the TVF system in the mode of exhaust at both ends, the smoke gathered at both ends of tunnel, with the smoke layer height of 4.7 m. Therefore, the third ventilation condition performed better owing to its more stable smoke layer and lower temperature. The conclusions from the full-scale fire experiments could provide on-site data for the emergency response during fire accident in metro station tunnels.
机译:该研究在代表性地铁站隧道中进行了全规模的消防实验,以研究烟雾传播规律,设计了三种典型的通风条件。在打开平台屏幕门(PSD)下,将燃料盘放置在隧道的中心线,并通过一系列热电偶测量温度曲线。基于现场测量的数据分析垂直温度分布,纵向温度分布和烟雾层高度。结果表明,通过纵向气流显着影响火灾诱导的烟雾繁殖。在自然通风下,火区域附近的温度相对较低,烟雾层高度略微不同,距离略有不同。在机械通气下,默认激活了过轨道排气(葡ote)系统,隧道通风风扇(TVF)系统的模式发生了变化。当TVF系统在A端供电模式中,在B端排气时,烟雾分布在X = 38.5至5.5米的范围内。在X = 38.5米的位置,烟雾层高度约为2米,这对疏散产生了影响。当TVF系统在两端排气模式时,烟雾聚集在隧道的两端,烟雾层高度为4.7米。因此,由于其更稳定的烟雾层和较低的温度,第三通气条件更好地进行。来自全规模消防实验的结论可以在地铁站隧道的火灾事故中提供现场数据。

著录项

  • 来源
    《Tunnelling and underground space technology》 |2021年第1期|103662.1-103662.8|共8页
  • 作者单位

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China|Beijing Key Lab City Integrated Emergency Respons Beijing 100084 Peoples R China|Guangzhou Metro Grp Co LTD Guangzhou 510330 Guangdong Peoples R China;

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China;

    Tsinghua Univ Dept Engn Phys Inst Publ Safety Res Beijing 100084 Peoples R China;

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

    Full-scale experiment; Fire; Smoke propagation; Station tunnel; Platform screen doors;

    机译:全规模实验;火;烟雾传播;站隧道;平台屏幕门;

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