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Simulation of temperature and smoke distribution of a tunnel fire based on modifications of multi-layer zone model

机译:基于多层区域模型修正的隧道火灾温度与烟气分布模拟

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摘要

Some modifications on Suzuki's multi-layer zone model (MLZ) have been done to predict temperature and smoke distribution of a tunnel fires, i.e., the radiation heat loss of fire source is taken into account and a four-surface radiation heat transfer model is introduced. Like Suzuki's model, as a special long and narrow space, the tunnel space is also divided into a number of layers in vertical direction and regions in longitudinal direction. The physical properties like temperature and species (CO, CO_2, etc.) are assumed uniform in every zone like two-zone model. However, the different heat transfer model is introduced. The MLZ model prediction is compared with the experiments of USTC and CFD model (FDS). It shows good agreement between the model prediction, experiments and CFD models (FDS). And the MLZ model needs less time than CFD model.
机译:为了预测隧道火灾的温度和烟气分布,对铃木的多层区域模型(MLZ)进行了一些修改,即,考虑了火源的辐射热损失,并引入了四面辐射传热模型。 。像铃木模型一样,隧道空间作为特殊的狭长空间,也分为垂直方向上的多个层和纵向方向上的区域。像温度和物质(CO,CO_2等)这样的物理属性在每个区域(如两区域模型)中均假定为均匀的。但是,引入了不同的传热模型。将MLZ模型预测与USTC和CFD模型(FDS)的实验进行了比较。它显示了模型预测,实验和CFD模型(FDS)之间的良好一致性。 MLZ模型比CFD模型需要的时间更少。

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