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首页> 外文期刊>The European physical journal: Special topics >Experimental investigation of electrohydrodynamic instabilities in micro channels
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Experimental investigation of electrohydrodynamic instabilities in micro channels

机译:微通道中电流体动力学不稳定性的实验研究

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An electric field is applied to destabilize the interface between two Newtonian and immiscible liquids flowing in a rectangular micro channel. The liquids are pumped into the micro channel with a syringe pump and a DC electric field is applied either parallel or normal to the flat interface between these liquids. The two liquids used in the experiments are a combination of ethylene glycol, different viscosity silicone oils, castor oil, and olive oil. The onset of electrohydrodynamic instability is investigated for various parameters, including the ratios of the flow rates, and viscosities of the liquids, the width of the micro channel, and the direction of the applied electric field. The order of the voltage applied to destabilize the interface is in the range 95 and 1190 V. The results of the experiments show that an increase in the viscosity ratio and the flow rate ratio of silicone oil to ethylene glycol have a stabilizing effect. It is also found that the important parameter to determine the critical voltage is the flow rate ratio, not the individual flow rates of the liquids. Also, as the width of the micro channel increases, the critical voltage increases. Lastly, for the liquid combinations used in the experiments, the interface could not be destabilized under the influence of a parallel electric field.
机译:施加电场以使在矩形微通道中流动的两种牛顿液体和不混溶液体之间的界面不稳定。用注射泵将液体泵入微通道,并平行或垂直于这些液体之间的平面界面施加直流电场。实验中使用的两种液体是乙二醇,不同粘度的硅油,蓖麻油和橄榄油的组合。对于各种参数,研究了电动流体动力学不稳定的发生,包括流速的比率,液体的粘度,微通道的宽度以及施加的电场的方向。用来使界面不稳定的施加电压的顺序在95到1190 V的范围内。实验结果表明,硅油与乙二醇的粘度比和流速比的增加具有稳定作用。还发现确定临界电压的重要参数是流速比,而不是液体的单独流速。而且,随着微通道的宽度增加,临界电压也增加。最后,对于实验中使用的液体组合,在平行电场的影响下,界面无法稳定。

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