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Analysis of Hydrodynamics of Fluid Flow on Corrugated Sheets of Packing

机译:瓦楞纸板流体流体流体动力学分析

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摘要

Modelling of the hydrodynamics behaviour of the liquid on the corrugated sheets of packing is studied using three-dimensional, volume-of-fluid (VOF) model that is incorporated in Ansys Fluent 12.0. The flow of three different liquids with different physical properties is modelled. A domain of corrugated sheets of packing resembling the real structured packing with little modifications in the elementary geometry is constructed using ICEM CFD 12.0. The quantitative comparisons of the wetting behavior from the simulations are in good agreement with experiments. Further, the study has been extended to understand the influence of the second corrugated sheet on the flow behavior. The contours from the simulations indicate the liquid hold-up in the crimp of two corrugated sheets, and these results are in good agreement with the earlier experimental studies performed using X-ray tomography in the literature. The result from the simulation shows that even for the high flow rate of around 811 mL/min for silicon-oil (DC5), only 60% of the corrugated sheet has been wetted. Hence, the efficiency of the existing packing can be further increased by increasing the wetted area in the corrugated sheet of packing.
机译:利用三维,流体体积(VOF)模型研究了液体的瓦楞纸板上的液体的模型的模拟,该模型掺入ANSYS FLUSENT 12.0。建模三种不同物理性质的三种不同液体的流动。使用ICEM CFD 12.0构建了类似于基本几何形状的实际结构包装的固定填料的瓦楞纸段,类似于基本几何形状的修改。从模拟中的润湿行为的定量比较与实验吻合良好。此外,该研究已经扩展以了解第二波纹板对流动行为的影响。来自模拟的轮廓表示两个波纹板的压接的液体保持,并且这些结果与在文献中使用X射线断层摄影进行的早期实验研究吻合良好。仿真结果表明,即使对于硅油(DC5)的高流速为约811ml / min,也仅润湿了60%的波纹板。因此,可以通过增加瓦楞纸板中的湿润区域进一步增加现有包装的效率。

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