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Charged droplet and particle-mixing studies in liquid-liquid systems in the presence of non-linear electrical fields

机译:非线性电场存在下液-液系统中带电液滴与颗粒混合的研究

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This paper is concerned with the mixing and residence time distribution behaviour of an experimental electrically enhanced column contactor in which electrically charged drops of water were fed into an organic liquid phase of sunflower oil across which a non-linear electrical field was maintained. The effects of electrical field strength upon mixing in the continuous phase were determined and a significant increase in mixing was observed as the field strength was increased. A quantitative theoretical development describing the observed behaviour is also presented. The mixing is described by simultaneous consideration of the movement of the drop phase and the continuous liquid phase. The drop motion, after formation at the charged nozzle and during the subsequent trajectory motion under the influence of the non-linear electric field, is analysed. The interaction between the drop motion and the velocity field of the continuous phase is thus described. The paper describes theoretical prediction of the interactions between charged drops and the electrodes. These interactions can exert a strong influence on the overall residence time of drops passing through the column, and potentially on the velocity profile of the continuous phase. Description of both sets of interactions is used to predict mixing patterns in the continuous phase as a function of applied field strength. The predicted mixing patterns are compared with experimentally recorded images of tracer movement in the continuous phase obtained under the same conditions. The calculated patterns compare favourably with those measured by experiment. The modelling methodology was used afterwards with success for predicting the residence time distribution in the form of the normalised concentration (proportional to the exit function) versus time. (C) 2004 Elsevier Ltd. All rights reserved.
机译:本文关注的是实验性电增强柱式接触器的混合和停留时间分布行为,其中带电的水滴被送入葵花油的有机液相中,在该相中保持了非线性电场。确定了电场强度对连续相中混合的影响,并且随着场强的增加,观察到混合的显着增加。还介绍了描述观察到的行为的定量理论发展。通过同时考虑滴相和连续液相的运动来描述混合。分析了在带电喷嘴处形成之后以及在非线性电场的影响下的后续轨迹运动期间的液滴运动。因此描述了下降运动与连续相的速度场之间的相互作用。该论文描述了带电液滴与电极之间相互作用的理论预测。这些相互作用对通过色谱柱的液滴的总体停留时间有很大影响,并且可能对连续相的速度分布产生很大的影响。两组相互作用的描述用于预测连续相中的混合模式,取决于施加的场强。将预测的混合模式与在相同条件下获得的连续相中示踪剂运动的实验记录图像进行比较。计算出的图案与实验测得的图案相比具有优势。随后成功地使用了建模方法,成功地以归一化浓度(与出口函数成比例)形式预测了停留时间与时间的关系。 (C)2004 Elsevier Ltd.保留所有权利。

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