A Study on the Maximum Temperature of a Ceiling Jet of Asymmetric Dual Strong Plumes in a Naturally Ventilated Tunnel

Fire Pub Date : 2024-03-26 DOI:10.3390/fire7040110
Shenghao Zhang, Na Meng
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Abstract

This paper explores the temperature distribution (TD) and maximum temperature (MT) below the ceiling induced by the ceiling jet of an asymmetric dual fire sources in a naturally ventilated tunnel. Considering strong plumes, this study investigates the effects of fire size and spacing of asymmetric dual fire sources on TD and MT. With the same power of fire source, when the size of one of the fire sources increases, the corresponding maximum temperature beneath ceiling decreases. Additionally, the temperature peak below the ceiling shifts from one to two, and the peak temperature of the larger fire source is lower compared to that of smaller one. When the fire sources distance increases, the maximum temperature initially decreases and then increases. Beyond a certain distance, the maximum temperature no longer changes with increasing distance. In this study, we investigated the effect of fire source size and spacing on the MT of the tunnel ceiling for asymmetric dual fire sources. A new model for predicting the MT underneath the tunnel ceiling was developed, taking into account the factors as fire spacing and fire size. The model is able to make effective predictions of the simulation results.
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自然通风隧道中不对称双强气流顶棚喷流的最高温度研究
本文探讨了自然通风隧道中非对称双火源的顶棚喷射所引起的顶棚下方的温度分布(TD)和最高温度(MT)。考虑到强羽流,本研究探讨了非对称双火源的火势大小和间距对 TD 和 MT 的影响。在火源功率相同的情况下,当其中一个火源的尺寸增大时,天花板下方相应的最高温度会降低。此外,天花板下方的温度峰值也从一个变为两个,且较大火源的峰值温度低于较小火源的峰值温度。当火源距离增加时,最高温度先降低后升高。超过一定距离后,最高温度不再随距离的增加而变化。在本研究中,我们研究了非对称双火源时,火源大小和间距对隧道顶板 MT 的影响。考虑到火源间距和火源大小等因素,我们建立了一个用于预测隧道顶棚下 MT 的新模型。该模型能够对模拟结果进行有效预测。
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