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Modelling and simulation of flow maldistribution in random packed columns with gas-liquid countercurrent flow

机译:气液逆流随机填充塔内流量分布不均的建模与仿真

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摘要

macroscopic model, based on the volume-averaged equations of momentum and continuity, is presented to predict hydrodynamic characteristics of gas and liquid countercurrent flow in random packed columns. The main advantage of this approach is that the model equations derived from the mass and momentum conversation laws will remain valid on a wider range of length scale, from laboratory to industrial size packed columns. Therefore they can be used as basic tool for more rigorous design and scale up of packed columns. In this study, the large-scale liquid maldistribution was simulated using the proposed model for a 0.6-m diameter column packed with 25 min stainless steel Pall rings. The development of liquid flow patterns along the packed height was obtained for several different initial distributions of liquid phase. Furthermore, the effect of liquid and gas loads on the liquid distribution was examined. The simulation results are in good agreement with the experimental data obtained in our laboratory for both water/air and isopar/air systems. [References: 35]
机译:建立了基于动量和连续性体积平均方程的宏观模型,以预测随机填充塔中气体和液体逆流的流体动力特性。这种方法的主要优点是,从质量和动量转换定律得出的模型方程在从实验室到工业尺寸填充柱的更大范围的长度范围内仍然有效。因此,它们可以用作更严格的设计和放大填充柱的基本工具。在这项研究中,使用建议的模型对装有25分钟不锈钢鲍尔环的直径为0.6 m的色谱柱模拟了大规模液体分布不均的情况。对于液相的几种不同的初始分布,获得了沿着堆积高度的液体流动模式的发展。此外,检查了液体和气体负载对液体分布的影响。仿真结果与在我们的实验室获得的水/空气和isopar /空气系统的实验数据非常吻合。 [参考:35]

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