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Development of a Particulate Filter Model for the Prediction of Backpressure: Improved Momentum Balance and Entrance and Exit Effect Equations

机译:基于背压预测的微粒过滤器模型的开发:改进的动量平衡和入口和出射效应方程

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The development of a one-dimensional model for the prediction of backpressure across a gasoline or diesel particulate filter (PF) is presented. The model makes two innovations: Firstly, the term for momentum convection in the gas momentum balance equations includes the loss (or gain) of axial momentum in the direction perpendicular to the channels; neglecting this results in the momentum convection term being too large. Secondly, equations for the pressure change due to the abrupt contraction at the PF entrance and for abrupt expansion at the exit are derived which take into account the fact that the velocity profile across the channels is not flat; often workers have used equations appropriate for high Reynolds numbers which assume flat velocity profiles. The model has been calibrated/tested against cold flow data for more than one length of PF. The use of more than one length allows along-filter pressure losses to be separated from entrance and exit effects. A simulation study has been carried out to investigate the relative magnitude of the different contributions to backpressure, viz. across-wall losses (Darcy and Forchheimer), along-channel losses (viscous and inertial) and entrance and exit effects. Finally, other workers have recently published a PF model in which the effect of the wall Reynolds number on the friction factors, Nusselt numbers and momentum transport has been included. The influence of these modifications on the backpressure and outlet temperature prediction has been investigated and found not to be significant over the range of conditions tested.
机译:呈现了在汽油或柴油颗粒​​过滤器(PF)上预测背压的一维模型的开发。该模型进行了两种创新:首先,气体动量平衡方程中的动量对流术语包括轴向动量在垂直于通道的方向上的损失(或增益);忽视这一导致动量对流术语过大。其次,导出了由于PF入口处的突然收缩和出口处的突然膨胀而导致的压力变化的方程,这考虑了通道上的速度曲线不平坦的事实;常常使用适合于高雷诺数的方程式使用,该数字呈现平面速度分布。该模型已经校准/测试了冷流量数据,以多于一长的PF。使用多个长度允许沿着滤波压力损耗与入口分离和退出效果。已经进行了模拟研究,以研究对背压的不同贡献的相对幅度。跨越墙体损失(达西和学前),沿着通道损失(粘性和惯性)和入口和退出效果。最后,其他工人最近发表了一种PF模型,其中包括墙雷诺数对摩擦因子,营养数量和动量运输的影响。已经研究了这些修改对背压和出口温度预测的影响,发现并发现在测试的条件范围内不显着。

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