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Predicting HCl concentrations in fire enclosures using an HCl decay model coupled to a CFD-based fire field model

机译:使用HCl衰减模型与基于CFD的火场模型相结合来预测火场中的HCl浓度

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The amount of atmospheric hydrogen chloride (HCl) within fire enclosures produced from the combustion of chloride-based materials tends to decay as the fire effluent is transported through the enclosure due to mixing with fresh air and absorption by solids. This paper describes an HCl decay model, typically used in zone models, which has been modified and applied to a computational fluid dynamics (CFD)-based fire field model. While the modified model still makes use of some empirical formulations to represent the deposition mechanisms, these have been reduced from the original three to two through the use of the CFD framework. Furthermore, the effect of HCl flow to the wall surfaces on the time to reach equilibrium between HCl in the boundary layer and on wall surfaces is addressed by the modified model. Simulation results using the modified HCl decay model are compared with data from three experiments. The model is found to be able to reproduce the experimental trends and the predicted HCl levels are in good agreement with measured values.
机译:由于与新鲜空气混合并被固体吸收,当消防废水通过防护罩传输时,由氯化物基材料燃烧产生的防火罩中的大气氯化氢(HCl)含量趋于下降。本文介绍了通常在区域模型中使用的HCl衰减模型,该模型已被修改并应用于基于计算流体动力学(CFD)的火场模型。尽管修改后的模型仍使用一些经验公式来表示沉积机理,但通过使用CFD框架,这些方法已从最初的三种减少为两种。此外,修改后的模型解决了HCl流入壁面对边界层中HCl和壁面之间达到平衡的时间的影响。使用修改后的HCl衰减模型的模拟结果与来自三个实验的数据进行了比较。发现该模型能够再现实验趋势,并且预测的HCl水平与测量值高度吻合。

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