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ELECTROWETTING-BASED COALESCENCE OF DROPLETS DURING DROPWISE CONDENSATION OF HUMID AIR

机译:液滴凝结过程中液滴基于电子的结余

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Dropwise condensation yields higher heat transfer coefficients by avoiding the thermal resistance of the condensate film, seen during filmwise condensation. This work explores further enhancement of dropwise condensation heat transfer through the use of electrowetting to achieve faster droplet growth via coalescence of the condensed droplets. Electrowetting is a well understood microfluidic technique to actuate and control droplets. This work shows that AC electric fields can significantly enhance droplet growth dynamics. This enhancement is a result of coalescence triggered by various types of droplet motion (translation of droplets, oscillations of three phase line), which in turn depends on the frequency of the applied AC waveform. The applied electric field modifies droplet condensation patterns as well as the roll-off dynamics on the surface. Experiments are conducted to study early-stage droplet growth dynamics, as well as steady state condensation rates under the influence of electric fields. It is noted that this study deals with condensation of humid air, and not pure steam. Results show that increasing the voltage magnitude and frequency increases droplet growth rate and overall condensation rate. Overall, this study reports more than a 30 % enhancement in condensation rate resulting from the applied electric field, which highlights the potential of this concept for condensation heat transfer enhancement.
机译:逐滴冷凝通过避免冷凝水薄膜的热阻(在薄膜冷凝过程中看到)而产生更高的传热系数。这项工作探索了通过使用电润湿来进一步提高逐滴冷凝传热的方法,以通过冷凝液滴的聚结来实现更快的液滴生长。电润湿是一种众所周知的微流体技术,用于驱动和控制液滴。这项工作表明,交流电场可以显着增强液滴的生长动力学。这种增强是由各种类型的液滴运动(液滴的平移,三相线的振荡)触发的聚结的结果,而液滴的运动又取决于所施加的AC波形的频率。施加的电场会改变液滴的冷凝方式以及表面上的滚降动力学。进行实验以研究早期液滴生长动力学以及在电场影响下的稳态凝结速率。应当指出,该研究涉及湿空气而不是纯蒸汽的冷凝。结果表明,增加电压幅值和频率可增加液滴的生长速率和总凝结速率。总体而言,该研究报告称,由于施加电场而使冷凝率提高了30%以上,这凸显了此概念对于冷凝传热增强的潜力。

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