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首页> 外文期刊>Tunnelling and underground space technology >A numerical study on critical velocity and back-layering length with trains' blockage in longitudinally ventilated tunnel fires
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A numerical study on critical velocity and back-layering length with trains' blockage in longitudinally ventilated tunnel fires

机译:纵向通风隧道火灾中临界速度和背层长度的数值研究

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摘要

Longitudinal ventilation is commonly adopted to prevent toxic smoke from spreading in tunnel fires. The understanding of the parameters, such as the critical velocity and the smoke back-layering, should be of significant for the ventilation system design in tunnels. In this paper, numerical simulations are carried out to investigate the critical velocity and back-layering length in an arched tunnel with trains' blockage. A total of 51 simulated cases with varied heat release rates and longitudinal ventilated velocities are considered. The result shows that the smoke layering can be divided into two parts according to the velocity direction of the smoke movement. Based on previous theories, a formula taking the effect of tunnel cross-section and blockage into account for predicting the critical velocity is proposed, which shows good consistency with these results. According to the distribution of longitudinal velocity, it is inferred that different HRR have little effect on the reduction rate of velocity. It is also observed that the variation of dimensionless back-layering length can be divided into three regions as the dimensionless control velocity varies. Finally, the correlation between dimensionless smoke back-layering length and dimensionless control velocity in longitudinally ventilated tunnels is also proposed.
机译:通常采用纵向通风来防止毒性烟雾在隧道中蔓延。对参数的理解,例如临界速度和烟雾背部层,对于隧道中的通风系统设计应该是重要的。在本文中,进行了数值模拟,以研究带有火车堵塞的拱形隧道中的临界速度和背层长度。考虑总共51例具有变化的热释放速率和纵向通风速度的模拟案例。结果表明,烟雾分层可以根据烟雾运动的速度方向分成两部分。基于以前的理论,提出了一种隧道横截面和阻塞来预测临界速度的公式的公式,这表明了与这些结果良好的一致性。根据纵向速度的分布,推断出不同的HRR对速度缩小效率几乎没有影响。还观察到,随着无量纲控制速度变化,可以将无量纲背层长度的变化分成三个区域。最后,还提出了纵向通风隧道中无量纲烟雾背层长度和无量子控制速度的相关性。

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