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Fire Size and Fire Spread in Tunnels with Longitudinal Ventilation Systems

机译:纵向通风系统的隧道火灾大小和火灾蔓延

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摘要

The results and findings of three previous research projects are combined with new research to estimate the overall influence of longitudinal ventilation on fire size and spread in tunnels. Each of the three previous projects is briefly described. Combining the results of these three projects, together with the knowledge of HGV fire behavior in an experimental test, enables the estimation of the maximum fire size of a fire in a tunnel and the conditions under which it might spread to an adjacent vehicle, for a given longitudinal ventilation velocity. These results have been combined into a single computer model. The results are presented and discussed. It is concluded that, although it may greatly increase the heat release rate of a fire in a tunnel, increasing the ventilation velocity will tend to reduce the likelihood of the fire spreading to an adjacent vehicle, assuming no flame impingement.
机译:将先前三个研究项目的结果和发现与新的研究相结合,以估计纵向通风对隧道火灾大小和蔓延的总体影响。简要介绍了之前的三个项目。结合这三个项目的结果以及在实验测试中对HGV火灾行为的了解,可以估算出隧道中火灾的最大火灾规模以及可能蔓延到相邻车辆的条件。给定纵向通风速度。这些结果已合并到单个计算机模型中。结果进行了介绍和讨论。结论是,尽管可以大大增加隧道中火灾的热释放速率,但假设没有火焰撞击,提高通风速度将倾向于降低火灾蔓延到相邻车辆的可能性。

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