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Numerical study on the thermal buoyant flow stratification in tunnel fires with longitudinal imposed airflow: Effect of an upstream blockage

机译:贯穿纵向施加气流隧道火灾流程分层的数值研究:上游阻塞的影响

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This paper is focused on the thermal buoyant flow stratification, generated by fire that occurred in a tunnel congested by an obstacle simulating a vehicle. The obstacle occupies about 0.31% of the tunnel cross section and is located at different distances from the floor. This case is considered for two main reasons: the first is that the remaining vehicles blocked upstream of the heat source cause a partial obstruction, the second reason is that the vehicle bottom actually has a certain distance from the tunnel floor. The obtained results showed that the increase of the forced airflow velocity has for results a loss of stratification. The obstruction existence effect in tunnel is reflected by smoke flow destratification upstream of the heat source fire. However, this effect is compensated downstream of the fire and there has been an improvement in the smoke flow stratification contrary to the case where the tunnel would be empty.
机译:本文集中于热潮流程分层,由火灾发生在隧道中的火灾中发生的火灾产生的。 障碍物占隧道横截面的约0.31%,位于距离地板的不同距离处。 这种情况被认为是两种主要原因:首先是封锁热源上游的剩余车辆导致部分梗阻,第二个原因是车辆底部实际上与隧道地板具有一定距离。 所得结果表明,强制气流速度的增加具有导致分层丧失。 隧道中的障碍存在效果被热源火灾上游的烟雾流动消失反射。 然而,这种效果在火灾的下游得到补偿,并且烟雾流分层的改善与隧道是空的。

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