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Experimental study on the smoke temperature distribution alongside the lining in tunnel fires

机译:隧道火灾中烟气温度沿衬砌分布的实验研究

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Tunnel fire temperature is a key factor for tunnel structural safety and evacuation. This study aimed to investigate the smoke temperature distribution alongside the lining across the section and effects of pool sizes and fuels on it through a series of small-scale experiments. The results showed the heat release rates of diesel were significantly lower than gasoline’s when they had the same pool size and volume. Nevertheless, the duration of diesel combustion increased obviously. As a result, the maximum smoke temperature under the ceiling for gasoline was significantly higher than diesel’s. The results were subsequently adopted to compare with other test results and illustrated a similar result. The initial temperature rising rates for gasoline pool fires were shown to agree well with the standardized temperature curves, but they were significantly lower for diesel pool fires. Two exponential correlations on vertical temperature distribution were provided, respectively, for gasoline and diesel fires. These findings are expected to be useful for the design of the thermal boundary on the lining in tunnel fires.
机译:隧道着火温度是影响隧道结构安全和疏散的关键因素。这项研究的目的是通过一系列小规模实验来研究烟气温度分布,以及整个炉衬的分布,以及烟囱尺寸和​​燃料对其的影响。结果显示,在相同的水池大小和容积的情况下,柴油的放热率明显低于汽油。但是,柴油的燃烧时间明显增加。结果,汽油天花板下的最高烟气温度明显高于柴油。随后采用结果与其他测试结果进行比较,并说明了相似的结果。汽油池起火的初始温度升高速率与标准温度曲线显示出很好的一致性,但柴油池起火的初始温度升高速率明显较低。对于汽油和柴油火灾,分别提供了垂直温度分布的两个指数相关性。这些发现有望对隧道火灾中衬砌的热边界设计有用。

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