Equivalent Fire Heat Release Rate of Double Fires with Different Separating Distances in the Longitudinal Ventilated Road Tunnel

Shaogang Zhang, Yuedong Han, Xianbin Li, Kun He, Min Peng, Jinhui Wang
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Abstract

Equivalent fire heat release rate of double fires under different separating distances is proposed based on the theoretical analysis of smoke back-layering. Through a series of numerical simulations, the characteristics of equivalent fire heat release rate of double fires are investigated, and the results show that the curvy of equivalent fire heat release rate of double fires presents a “stair” shape with the increase of separating distance, which can be divided into three regions, namely the stable region, quickly decrease region and fluctuation region. Based on the equivalent fire heat release rate, a new model to predict the smoke back-layering length of double fires under different separating distances is developed. The model of equivalent fire heat release rate is verified by the experimental results.
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纵向通风道路隧道不同间隔距离双火等效放热率
在对烟背分层理论分析的基础上,提出了不同间隔距离下双火的等效放热率。通过一系列数值模拟,研究了双火等效火灾放热率的特征,结果表明:双火等效火灾放热率曲线随分离距离的增加呈“阶梯”形,可分为稳定区、快速减小区和波动区三个区域。基于等效火灾放热率,建立了不同间隔距离下双火烟气背层长度的预测模型。实验结果验证了等效火灾放热率模型的正确性。
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