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Scale effect of mass loss rates for pool fires in an open environment and in tunnels with wind

机译:露天环境和有风隧道中水池火灾的质量损失率的比例效应

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This paper investigates the influence of wind on mass loss rate per unit area (MLRPUA) of fuel-controlled pool fires both in an open environment and inside tunnels and the scale effect of pool fires is also investigated. Large pool fires with a diameter D greater than 1 m (D 1 m) are of key concern but small pool fires (D 1 m) are also considered for comparison. This is done by analyzing large amounts of experimental data from the literature. Results show that for small pool fires (D 1 m) in an open environment, increasing wind speed tends to increase the MLRPUA, especially for pools with D 0.2 m, where the MLRPUA could increase significantly with the increase of wind speed. But when small pool fires occur in tunnels, the results are more complex. When the ratio of effective tunnel height to pool diameter is less than 3, increasing wind speed tends to decrease the MLRPUA. When this ratio is greater than 3, the influence of wind on MLRPUA of pool fires in tunnels is similar to that in an open environment. The influence of wind on the MLRPUA decreases for larger pool diameters, no matter whether the pool fire occurs in an open environment or in a tunnel. For large pools with D 1 m, the MLRPUA is not affected significantly by increasing wind speed and most likely varies within 30% for a wide range of wind speeds based on the test data collected. This influence is far less than the values concluded by previous studies based on small pool fire experiments. The outcome of this study contributes to improving the understanding of burning characteristics of pool fires under windy conditions, especially large pool fires, which are much more meaningful than small pool fires from the perspectives of fire protection engineering and fire hazard assessment.
机译:本文研究了风对露天环境和隧道内部燃料控制的池火的单位面积质量损失率(MLRPUA)的影响,并研究了池火的规模效应。直径D大于1 m(D> 1 m)的大型水池火灾是关键问题,但也考虑将小型水池火灾(D <1 m)进行比较。这是通过分析来自文献的大量实验数据来完成的。结果表明,对于在开放环境中的小型水池火灾(D <1 m),风速增加倾向于增加MLRPUA,特别是对于D <0.2 m的水池,其中MLRPUA随风速的增加而显着增加。但是,当隧道中发生小水池火灾时,结果会更加复杂。当有效隧道高度与池直径的比率小于3时,增加风速会降低MLRPUA。当此比率大于3时,风对隧道中池火的MLRPUA的影响与开放环境中的影响相似。对于较大直径的水池,无论是在开放环境中还是在隧道中发生火灾,风对MLRPUA的影响都会减小。对于D> 1 m的大型水池,MLRPUA不会受到风速增加的明显影响,并且根据收集的测试数据,很可能在较大风速的30%范围内变化。这种影响远小于先前基于小型水池火灾实验的研究得出的结论。这项研究的结果有助于增进对大风条件下池火燃烧特性的理解,尤其是大型池火,从消防工程和火灾危险性评估的角度来看,这比小型池火更有意义。

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