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Investigation of hydrodynamic behavior in random packing using CFD simulation
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Investigation of hydrodynamic behavior in random packing using CFD simulation

Jia-Lin Kang, Ya-Cih Ciou, Dong-Yang Lin, David Shan-Hill Wong, Shi-Shang JangShi-Shang Jang
Chemical Engineering Research and Design, 卷.147, 頁碼.43-54
07/2019

摘要

Automatic stacking CFD simulation Hydrodynamic behaviors Multiphase Random packing Chemistry (all) Chemical Engineering (all)
Computational fluid dynamics (CFD) simulations of countercurrent gas–liquid flow in random packings of Raschig rings were carried out in this study. This model used gravity simulation to construct the random packing structure, and a volume expansion-recovery method to improve the meshing quality. A simple feedback control scheme was applied to control the gas inlet flow rate so that pressure drop can be estimated. The generated characteristics of the packing structure such as the number of packing elements, dry surface area and porosity were found to be close to experiments. CFD predictions of hydrodynamics properties are also validated by the experimental data using a small column section. The results indicate that our CFD model was able to capture the essential hydrodynamics behavior of the gas–liquid countercurrent flow. Hence, the approach presented in this study can be used as a basis for studying the effect of detailed packing-geometry design on hydrodynamic and mass transfer characteristics.

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