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Gas-holdup distribution and energy dissipation in an ejector-induced downflow bubble column: the case of non-Newtonian liquid

机译:喷射器引起的下流气泡塔中的气体滞留量分布和能量耗散:非牛顿液体的情况

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摘要

A precise knowledge of gas-holdup distribution and energy dissipation is essential for designing gas-liquid contactors. A semi-theoretical approach has been presented to obtain the axial distribution of gas holdup through the column for gas-non-Newtonian liquid two-phase flow system. The whole column is distinguished to have three zones based on gas holdup, viz. top, middle and bottom. The middle section where significant accumulation of bubbles takes place, contributes higher gas holdup towards the total compared to the other two sections. Energy dissipation in the column have been calculated from two-phase gas-liquid frictional losses. A comparative study shows that substantial gas holdup are observed in the present system with considerably lower energy losses. The experimental data of gas holdup have been correlated in terms of pressure drop by the modified Lockhart-Martinelli equation. (C) 2004 Elsevier Ltd. All rights reserved.
机译:气体滞留分布和能量耗散的精确知识对于设计气液接触器至关重要。提出了一种半理论方法来获得气体非牛顿液体两相流系统中通过塔的气体滞留量的轴向分布。整个塔基于气体滞留量即三个区域而区分。顶部,中间和底部。与其他两个部分相比,发生大量气泡积累的中间部分对总气体的含气量更高。柱中的能量耗散是根据两相气液摩擦损失计算的。一项比较研究表明,在本系统中观察到大量的气体滞留量,并且能量损失明显降低。气体滞留率的实验数据已通过修改后的Lockhart-Martinelli方程与压力降相关。 (C)2004 Elsevier Ltd.保留所有权利。

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