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Fire And Smoke Control In Road Tunnels-a Case Study

机译:公路隧道的防烟防烟研究

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A research project has been conducted to evaluate the effectiveness of in-place emergency ventilation strategies to control fire and smoke spread in a road tunnel. Some of these strategies date back to the design of the tunnel (1964). Following a recent fire, the operating instructions were revised. A scientific-based validation of these operation instructions is the main objective of the current study. The research includes both numerical and experimental studies. The numerical study uses the fire dynamic simulator model to investigate smoke ventilation in tunnels. The experimental study is used to provide the necessary initial and boundary conditions for the computational fluid dynamics model.rnThe results of the numerical analyses indicated that the phenomenon of "backlayering " did not occur in all simulated cases and that the in-place ventilation strategies are efficient in clearing hot smoke and fire products from the tunnel.rnThe study also provides recommendations in order to further improve the performance of these strategies and increase the level of safety of means of evacuation of the tunnel. The recommendations suggested to change the configuration of the side vent dampers according to the fire location and the scenario used and to introduce a duct system that separates the evacuation paths from the ventilation system operations in the service galleries. These recommendations have inspired the tunnel authorities to conduct a series offeasibility studies to re-engineer the ventilation system and refit the service galleries.
机译:已经进行了一项研究项目,以评估就地应急通风策略控制道路隧道内火灾和烟尘扩散的有效性。其中一些策略可以追溯到隧道的设计(1964年)。最近发生火灾后,对操作说明进行了修订。这些研究的科学依据是当前研究的主要目标。该研究包括数值研究和实验研究。数值研究使用火灾动态模拟器模型研究隧道中的烟气通风。通过实验研究为计算流体动力学模型提供了必要的初始条件和边界条件。数值分析结果表明,在所有模拟情况下均未发生“回填”现象,并且就地通风策略是可行的。该研究还提供了一些建议,以进一步改善这些策略的性能并提高隧道疏散手段的安全性。这些建议建议根据火场位置和所使用的场景来更改侧通风阀的配置,并引入一种管道系统,该管道系统将疏散路径与维修通道中的通风系统操作分开。这些建议启发了隧道管理部门进行了一系列可行性研究,以重新设计通风系统并重新设置维修通道。

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  • 来源
    《ASHRAE Transactions》 |2008年第2期|283-292|共10页
  • 作者

    Ahmed Kashef;

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  • 正文语种 eng
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