Numerical Simulation of the Smoke Distribution Characteristics in a T-Shaped Roadway

Fire Pub Date : 2024-03-03 DOI:10.3390/fire7030080
Cui Ding, Dou Chang, Diange Sun, Songling Zou
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Abstract

This paper numerically analyzes the influence of heat release rate (HRR) and longitudinal ventilation velocity on smoke distribution characteristics in a T-shaped roadway when the fire source was located upstream of the T-junction. The back-layering length, critical ventilation velocity, smoke temperature, and CO concentration in the main and branched roadway were investigated and analyzed. The results showed that the ventilation velocity is the key factor influencing back-layering length, while the effect of HRR on back-layering length is gradually weakened as HRR increases. The critical ventilation velocity in the T-shaped roadway is higher than in a single-tube roadway, and the predicted model of dimensional critical ventilation velocity in a T-shaped bifurcated roadway is proposed. The correlation between average temperature (Z = 1.6 m) (both in the main roadway I and the branched roadway) and ventilation velocity fits the power function, and the variation in average temperature (Z = 1.6 m) according to HRR fits the linear formula. The relation between average concentration of CO (Z = 1.6 m) (both inside the main roadway I and the branched roadway) and longitudinal ventilation velocity follows the power relation, and the variation in average concentration of CO (Z = 1.6 m) according to HRR follows the linear function.
T 形道路烟雾分布特征的数值模拟
本文通过数值方法分析了当火源位于 T 型交叉口上游时,热释放率(HRR)和纵向通风速度对 T 型巷道烟雾分布特征的影响。研究分析了主巷道和支巷道的后分层长度、临界通风速度、烟温和 CO 浓度。结果表明,通风速度是影响背层长度的关键因素,而随着 HRR 的增加,HRR 对背层长度的影响逐渐减弱。T 型巷道的临界通风速度高于单管巷道,并提出了 T 型分岔巷道临界通风速度的尺寸预测模型。平均温度(Z = 1.6 米)(包括主巷道 I 和分支巷道)与通风速度之间的相关性符合幂函数,平均温度(Z = 1.6 米)随 HRR 的变化符合线性公式。一氧化碳平均浓度(Z = 1.6 米)(包括主巷道 I 和支巷道内)与纵向通风速度之间的关系遵循幂函数,一氧化碳平均浓度(Z = 1.6 米)随 HRR 的变化遵循线性函数。
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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