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Experimental and numerical studies on ceiling maximum smoke temperature and longitudinal decay in a horseshoe shaped tunnel fire

机译:马蹄形隧道火灾中天花板最高烟气温度和纵向衰减的实验和数值研究

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The present paper investigates the ceiling maximum smoke temperature and longitudinal decay in tunnel fires using a horseshoe shaped 1:3.7 scale-model tunnel constructed by concrete and a full-scale model tunnel established by SIMTEC for the first time. The maximum smoke temperature beneath the ceiling and the longitudinal temperature profiles were obtained and analyzed. The major conclusions are summarized as follows: The ceiling maximum smoke temperature rise right above the fire source is directly proportional to the terms ofQ2/3/Hf5/3and the ceiling maximum smoke temperature decreases as a sum function of two exponential equations of horizontal distance. Modified equations are proposed for maximum smoke temperature rise beneath the ceiling and longitudinal temperature decay, and the predictions show a good agreement with the values measured by experiments and numerical simulations. The results obtained by numerical simulations agree well with experimental results, and SIMTEC is reasonable to simulate the tunnel fires to predict the temperature profiles. The results are of important significance for tunnel fire safety and personnel evacuation.
机译:本文使用马蹄形的1:3.7比例模型混凝土隧道和SIMTEC首次建立的全尺寸模型隧道,研究了隧道火灾中的天花板最高烟气温度和纵向衰减。获得并分析了天花板下方的最高烟气温度和纵向温度曲线。主要结论概括如下:火源上方的天花板最高烟气温度升高与Q2 / 3 / Hf5 / 3的项成正比,并且天花板最高烟气温度作为两个水平距离指数方程的和而降低。提出了改进的方程式,用于最大烟气在天花板以下的温度升高和纵向温度衰减,并且这些预测与实验和数值模拟测得的值显示出良好的一致性。数值模拟得到的结果与实验结果吻合得很好,SIMTEC对于模拟隧道火灾以预测温度分布是合理的。结果对隧道的消防安全和人员疏散具有重要意义。

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