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Maximum temperature of smoke beneath ceiling in tunnel fire with vertical shafts

机译:竖井隧道火灾中天花板下方烟气的最高温度

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摘要

To assess the impact of heat smoke in tunnel with vertical shafts, the maximum temperature of smoke beneath ceiling is researched theoretically and experimentally in this paper. A theoretical prediction model for maximum temperature of smoke beneath ceiling is built using dimensional analysis. A numerical model is built and calibrated with the full-scale experiment data. The calibrated numerical model is used to simulate the maximum temperature of smoke under different conditions with different shaft geometry. At last, the proposed theoretical model was formulated and compared with Kurioka model, experimental data and simulation data. The results show that the proposed theoretical model can give a better prediction for the tendency. It can be used to predict the maximum temperature of smoke beneath ceiling of tunnel with vertical shafts by taking the shaft geometry and arrangements effect into account. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了评估热烟对竖井隧道的影响,本文在理论和实验上研究了天花板下烟的最高温度。使用尺寸分析建立了天花板下烟气最高温度的理论预测模型。建立了一个数字模型,并使用完整的实验数据进行了校准。校准的数值模型用于模拟在不同条件下具有不同轴几何形状的烟的最高温度。最后,提出了理论模型,并与黑冈模型,实验数据和仿真数据进行了比较。结果表明,所提出的理论模型可以较好地预测这一趋势。考虑到竖井的几何形状和布置效果,可用于预测竖井隧道顶棚下的最高烟气温度。 (C)2015 Elsevier Ltd.保留所有权利。

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