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Electrocoalescence of water drop trains in oil under constant and pulsatile electric fields

机译:恒定和脉动电场下油中水滴链的电凝聚

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This study addresses the effectiveness of constant and pulsed DC fields in promoting coalescence of dispersed water drops in an oil-continuous phase. For this purpose, a train of drops of relatively uniform size is injected into a stream of flowing sunflower oil. This stream is then admitted to a coalescing section, where an electric field is applied between a pair of ladder-shape bare electrodes. The capability of this device to enhance coalescence of droplets in a chain is investigated at different field intensities, frequencies and waveforms. The effect of the initial inter-droplet separation distance on the process performance is also addressed under constant DC fields. The dominant coalescence mechanism is found to be due to dipole-dipole interaction at low field strength, whereas electrophoresis becomes predominant at higher field strength. Experiments reveal the existence of an optimal frequency, where the average droplet size enlargement is maximized, especially at low field strengths. The droplet size at the outlet of the coalescer is also found to be dependent on the field waveform. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:这项研究探讨了恒定和脉冲直流电场在油连续相中促进分散水滴聚结的有效性。为此,将一列大小相对均匀的液滴注入流动的葵花籽油流中。然后将该流送入聚结段,在此处,在一对梯形裸电极之间施加电场。在不同的场强,频率和波形下,研究了该装置增强液滴中液滴聚结的能力。在恒定的直流磁场下,还可以解决初始液滴间距离对工艺性能的影响。发现主要的聚结机理是由于在低场强下偶极-偶极相互作用,而电泳在高场强下占主导地位。实验表明存在最佳频率,在该频率下,平均液滴尺寸增大最大,尤其是在低场强下。还发现聚结器出口处的液滴尺寸取决于场波形。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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