Effect of Semi-Transverse Ventilation Velocity on Combustion Characteristics of Pool Fire Sources in a Scaled Tunnel

Fire Pub Date : 2024-01-04 DOI:10.3390/fire7010018
Liyue Gong, Yifan Peng, Jun Xu, Wanli Li, Tianyao Jia, Junqiu Ma, Haihang Li
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Abstract

Compared to longitudinal ventilation, there are few studies on fire source development under semi-transverse ventilation. This work studied the influence of semi-transverse ventilation on the combustion characteristics of fire sources in a scaled tunnel. The burning rate and heat transfer feedback during pool fire combustion were revealed under different longitudinal and transverse ventilation velocities. The results showed that transverse ventilation had little influence on combustion characteristics, and the burning rate was more obviously affected by longitudinal ventilation. The heat convection feedback increased monotonically with the increase of the longitudinal ventilation, which led to the increase of the total heat feedback on the fuel. The heat radiation feedback changed little, and the heat conduction feedback decreased monotonically with the increase of the longitudinal ventilation velocity. By aid of a Fire Dynamics Simulator, it was found that the flame tilted downstream and was in the flow line of the lower cold air flow coming from upstream and the upper hot smoke flow outgoing in the downstream direction. The transverse ventilation of 2 m/s or lower hardly affected the combustion field of the fire source. Therefore, semi-transverse ventilation is preferable to longitudinal ventilation from the point of view of limiting fire expansion.
半横向通风速度对比例隧道中池塘火源燃烧特性的影响
与纵向通风相比,有关半横向通风条件下火源发展的研究很少。这项工作研究了半横向通风对缩尺隧道中火源燃烧特性的影响。研究揭示了不同纵向和横向通风速度下池塘火燃烧过程中的燃烧速率和传热反馈。结果表明,横向通风对燃烧特性影响不大,纵向通风对燃烧速率的影响更为明显。热对流反馈随纵向通风量的增加而单调增加,导致燃料的总热量反馈增加。热辐射反馈变化不大,而热传导反馈则随着纵向通风速度的增加而单调减少。借助火灾动力学模拟器,可以发现火焰向下游倾斜,处于来自上游的下部冷气流和下游方向流出的上部热烟气流的流线上。2 米/秒或更低的横向通风几乎不会影响火源的燃烧场。因此,从限制火势扩大的角度来看,半横向通风比纵向通风更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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