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Controlling shedding characteristics of condensate drops using electrowetting

机译:使用电润湿控制冷凝液滴的脱落特性

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We show here that ac electrowetting (ac-EW) with structured electrodes can be used to control the gravity-driven shedding of drops condensing onto flat hydrophobic surfaces. Under ac-EW with straight interdigitated electrodes, the condensate drops shed with relatively small radii due to the ac-EW-induced reduction of contact angle hysteresis. The smaller shedding radius, coupled with the enhanced growth due to coalescence under EW, results in an increased shedding rate. We also show that the condensate droplet pattern under EW can be controlled, and the coalescence can be further enhanced, using interdigitated electrodes with zigzag edges. Such enhanced coalescence in conjunction with the electrically induced trapping effect due to the electrode geometry results in a larger shedding radius, but a lower shedding rate. However, the shedding characteristics can be further optimized by applying the electrical voltage intermittently. We finally provide an estimate of the condensate volume removed per unit time in order to highlight how it is enhanced using ac-EW-controlled dropwise condensation. Published by AIP Publishing.
机译:我们在这里表明,具有结构化电极的交流电润湿(ac-EW)可用于控制重力驱动的液滴凝结到平坦疏水表面上的脱落。在带有直指状电极的ac-EW下,由于ac-EW引起的接触角滞后减小,冷凝物液滴以相对较小的半径散落。较小的脱落半径,再加上EW下由于聚结而增加的生长,导致脱落速率增加。我们还显示,使用带锯齿形边缘的叉指电极,可以控制EW下的冷凝物液滴模式,并可以进一步增强聚结。由于电极的几何形状,这种增强的聚结结合电诱捕效应导致较大的脱落半径,但具有较低的脱落速率。但是,可以通过间歇地施加电压来进一步优化脱落特性。最后,我们提供了每单位时间去除的冷凝水量的估算值,以突出显示使用ac-EW控制的逐滴冷凝水如何提高冷凝水量。由AIP Publishing发布。

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