填料床气液共流下流压降模型

G.S.V. Ratnam, M.S. Ananth, Y.B.G. Varma
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引用次数: 15

摘要

在观察到不存在径向压力梯度的基础上,考虑到填料床的结构和流体的物理性质,提出了气液通过填料床的压降模型。该模型将床层总电压分为内、外两部分,并将总含液率合理分配为内、外两部分。本研究和文献报道的2500多个实验数据与模型相关,均方根偏差小于±9%。发现影响两相压降的重要参数是床层孔隙度、雷诺数以及Eötvos与Morton数的乘积。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A model for the pressure drop in gas—liquid cocurrent downflow through packed beds

A model for pressure drop is proposed for gas—liquid flow through packed beds on the basis of the observed absence of radial pressure gradients and taking into consideration the structure of the bed and the physical properties of the fluids. The model divides the total voitage of the bed into internal and external voidage and appropriately distributes the total liquid holdup into internal and external holdup.

Over 2500 experimental data, from the present study as well as those reported in literature, are correlated by the model with an r.m.s. deviation of less than ±9%. The significant parameters affecting the two-phase pressure drop are found to be the bed porosity, the Reynolds number, and the product of the Eötvos and the Morton numbers.

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