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An experimental study on the transition velocity and smoke back-layering length induced by carriage fire in a ventilated tunnel

机译:通风隧道托运型火灾诱导过渡速度和烟雾背分层长度的实验研究

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摘要

Smoke is one of the important causes of tunnel fire casualties. The critical velocity and smoke back-layering length are important parameters of smoke control in the tunnel. This paper focused on experimentally studying the characteristics of the critical control parameter (such as, critical velocity, transition velocity) and smoke back-layering length induced by carriage fire in the longitudinal ventilated tunnel, which has not been quantified in previous studies. Overall, many repeatable test conditions were involved on different fire heat release rate (HRR), the longitudinal ventilation velocity and opening sizes. It is found that, when the fire heat release rate in the tunnel is small, the critical velocity increases with the increasing heat release rate. The critical velocities will no longer change when the fire heat release rates further increases to a certain value. The relationship between dimensionless smoke back-layering length and critical velocity is piecewise function. With the longitudinal ventilation velocity increasing to a certain value, the smoke back-layering length will become not sensitive to variations with the longitudinal ventilation velocity any more. So, for this part, the new parameter called "transition velocity" implies that the dimensionless smoke back-layering length changes slowly with the dimensionless critical velocity. Then, the dimensionless correlation of smoke back-layering length and transition velocity induced by carriage fire in ventilated tunnel was proposed.
机译:烟雾是隧道火灾伤亡的重要原因之一。临界速度和烟雾背层长度是隧道中烟雾控制的重要参数。本文集中于通过在先前研究中尚未量化的纵向通风隧道中的临界控制参数(例如临界速度,过渡速度)和烟雾背分层长度的临界控制参数(例如临界速度,过渡速度)和烟雾背分层长度的特征。总体而言,许多可重复的测试条件涉及不同的火热释放速率(HRR),纵向通风速度和开口尺寸。结果发现,当隧道中的火热释放速率小时,临界速度随着热释放率的增加而增加。当火热释放速率进一步增加到一定值时,临界速度将不再改变。无量纲烟雾背层长度和临界速度之间的关系是分段功能。随着纵向通风速度增加到一定的值,烟雾背层长度将不再对纵向通风速度的变化变得不敏感。因此,对于该部分,称为“转换速度”的新参数意味着无量纲烟雾背层长度与无量纲临界速度缓慢变化。然后,提出了由通风隧道中的托架火引起的烟雾背分层长度和过渡速度的无量纲相关性。

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