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Decay of buoyant smoke layer temperature along the longitudinal direction in tunnel fires

机译:隧道火灾中烟气浮层温度沿纵向的衰减

摘要

A simple model was reported to predict the longitudinal distribution of temperature rise for the smoke layer along a tunnel. The longitudinal decay of excess smoke layer temperature in dimensionless form was studied by including convective and radiative heat transfer to the boundary. An expression was derived to relate to the dimensions of the cross-section of the tunnel, the depth and the velocity of the smoke layer to the temperature. A series of full-scale tests was conducted in three vehicular tunnels to verify the model. There, temperature field and smoke layer traveling velocity were measured downstream the fire source. The decay factors for longitudinal smoke layer excess temperature distributions were predicted from the model based on the smoke layer velocities and the dimensions of the vehicular tunnel. Results are then compared with those deduced directly from the measured temperature data. Good agreement was achieved.
机译:据报道,有一个简单的模型可以预测烟道沿烟层温度升高的纵向分布。通过将对流和辐射热传递到边界,研究了无量纲形式的过量烟层温度的纵向衰减。得出了与隧道横截面的尺寸,烟层的深度和温度对温度的速度有关的表达式。在三个车辆隧道中进行了一系列的全面测试,以验证模型。在那里,在火源下游测量了温度场和烟层的行进速度。基于烟层速度和车辆隧道的尺寸,根据模型预测了纵向烟层超温分布的衰减因子。然后将结果与直接从测得的温度数据得出的结果进行比较。达成了良好的协议。

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