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The Influence of Tunnel Geometry and Ventilation on the Heat Release Rate of a Fire

机译:隧道的几何形状和通风对火的放热率的影响

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摘要

It has occasionally been observed that fires in tunnels appear to be significantly more severe than fires in the open air. A literature review has been carried out, comparing heat release data from fires in tunnels with heat release data from similar fires in the open air. A Bayesian methodology has been used to investigate the geometrical factors that have the greatest influence on heat release rate. It is shown that the heat release rate of a fire in a tunnel is influenced primarily by the width of a tunnel; a fire will tend to have a higher heat release rate in a narrow tunnel rather than in a wide tunnel. The observed relationship between heat release rate and tunnel width is presented. Results from a study investigating the variation of heat release rate with ventilation velocity for fires in tunnels are also presented. A method for making realistic estimates of the heat release rates of fires in tunnels, based on these results, is presented.
机译:偶尔观察到隧道中的火灾似乎比露天火灾严重得多。已经进行了文献综述,将隧道火灾中的放热数据与露天类似火灾中的放热数据进行了比较。贝叶斯方法已用于研究对放热率影响最大的几何因素。结果表明,隧道内火灾的热释放速率主要受隧道宽度的影响。在狭窄的隧道而不是宽阔的隧道中,火灾倾向于具有更高的放热率。给出了放热率和隧道宽度之间的观察关系。还提供了一项研究的结果,该研究调查了隧道火灾中放热率随通风速度的变化。提出了一种基于这些结果对隧道火灾放热率进行实际估算的方法。

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