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Theoretical studies on buoyancy-driven ceiling jets of tunnel fires with natural ventilation

机译:自然通风的隧道火灾燃气射流的理论研究

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摘要

The paper presents a theoretical study on the ceiling jets induced by small fires in tunnels. The ceiling jet thickness, temperature rise and velocity are analyzed theoretically with Non-Boussinesq approximation. The study focuses on the radial and one-dimensional ceiling jets. Numerical solutions in the radial region and one-dimensional shooting region are obtained and new analytical solutions in the critical flow region are achieved. Analytical solutions indicate that the ceiling jet thickness increases with distance away from the fire source, which largely differs from the existing models implying that the ceiling jet thickness in the one-dimensional critical flow remains constant. Additionally, impacts of the air entrainment, friction and heat transfer on the ceiling jet are analyzed. It is found that in the radial and one-dimensional shooting flow regions, the air entrainment has a much more significant effect than the friction and heat transfer. However, in the one-dimensional critical flow region, the impact of air entrainment seems to be negligible and the flow is dominated by the friction and heat transfer. Further, validation of the present theory is made by comparing with previous theories, semi-empirical models, and experiments. The results show that the present theory provides a good prediction of the ceiling jet properties with natural ventilation for a small fire.
机译:本文介绍了隧道中小火灾引起的天花板喷射的理论研究。理论上,用非Boussinesq近似地分析天花板射流厚度,温度升高和速度。该研究重点介绍径向和一维天花板。获得径向区域和一维拍摄区域中的数值溶液,并且实现了临界流动区域中的新分析溶液。分析解决方案表明天花板射流厚度随着距离消防源的距离而增加,这与现有模型不同,这暗示了一维临界流中的天花板射流厚度保持恒定。另外,分析了空气夹带,摩擦和传热对天花板射流的影响。结果发现,在径向和一维拍摄流量区域中,空气夹带具有比摩擦和传热更大的效果。然而,在一维临界流动区域中,空气夹带的冲击似乎可以忽略不计,并且流动由摩擦和传热主导。此外,通过与先前的理论,半经验模型和实验相比,对本理论的验证。结果表明,本理论提供了对小火灾自然通风的天花板喷射性能的良好预测。

著录项

  • 来源
    《Fire Safety Journal》 |2021年第1期|103228.1-103228.21|共21页
  • 作者单位

    RISE Res Inst Sweden Safety & Transport Fire Res Box 857 SE-50115 Boras Sweden|Tongji Univ Dept Geotech Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

    RISE Res Inst Sweden Safety & Transport Fire Res Box 857 SE-50115 Boras Sweden;

    RISE Res Inst Sweden Safety & Transport Fire Res Box 857 SE-50115 Boras Sweden;

    Tongji Univ Dept Geotech Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

    Tongji Univ Dept Geotech Engn 1239 Siping Rd Shanghai 200092 Peoples R China;

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

    Tunnel fire; Ceiling jet; Gas temperature; Velocity; Ceiling jet thickness;

    机译:隧道火;天​​花板喷射;气体温度;速度;天花板喷射厚度;

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