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Experimental study on temperature distribution beneath tunnel ceiling under the condition of transverse double fire sources

机译:横向双火源条件下隧道顶板下温度分布试验研究

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? 2022 Elsevier LtdThe maximum ceiling temperature and transverse temperature distribution under the condition of transverse double fire sources are experimentally and theoretically studied. A series of experiments were carried out in a scaling tunnel (1:20) to investigate the effects of heat release rates (HRR) and distance of the two fire sources (S) on the maximum temperature and the transverse temperature distribution beneath tunnel ceiling. Results shown that when the fire sources were set close to each side of the wall, the location of the maximum temperature was found at the middle ceiling of the tunnel. A inverted “N” shape ceiling temperature distribution, with the ceiling temperature firstly decreased and increased and then decreased, was found along the half-cross section of the tunnel. New maximum and transverse ceiling temperature models were developed with considering the distance and heat release rate of the two fire sources, and considering the air entrainment restrictions by the sidewall. New findings of this work can provide a significant reference for the risk assessment of tunnel fires with two transverse fire sources.
机译:?2022 Elsevier Ltd对横向双火源条件下的最高天花板温度和横向温度分布进行了实验和理论研究。在缩放隧道(1:20)中进行了一系列实验,研究了热释放速率(HRR)和两个火源距离(S)对隧道顶板下最高温度和横向温度分布的影响。结果表明:当火源设置在靠近墙体两侧时,最高温度的位置位于隧道的中顶端。沿隧道半横截面呈倒“N”形天花板温度分布,天花板温度先降低后升高后降低。考虑了两个火源的距离和热释放速率,并考虑了侧壁的空气夹带限制,建立了新的最高和横向天花板温度模型。本研究的新发现可为两个横向火源隧道火灾风险评估提供重要参考。

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