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DYNAMICS OF DROPLET MOTION INDUCED BY ELECTROWETTING

机译:电泳诱导的液滴运动动力学

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Electrowetting has drawn significant interests due to the potential applications in electronic displays, lab-on-a-chip devices and electro-optical switches, etc. Current understanding of electrowetting-induced droplet dynamics is hindered by the inadequacy of available numerical and theoretical models in properly handling the dynamic contact angle at the moving contact line. A combined numerical and experimental approach was employed in this work to study the spatiotemporal responses of a droplet subject to EW with both direct current and alternating current actuating signals. The time evolution of the droplet shape was measured using high-speed photography. Computational fluid dynamics models were developed by using the Volume of Fluid-Continuous Surface Force method in conjunction with a selected dynamic contact angle model. It was found that the numerical models were able to accurately predict the key parameters of the electrowetting-induced droplet dynamics.
机译:电润湿由于其在电子显示器,芯片实验室设备和电光开关等方面的潜在应用而引起了人们的极大兴趣。当前对电润湿引起的液滴动力学的理解受制于现有的数值模型和理论模型的不足。正确处理移动接触线上的动态接触角。在这项工作中采用了数值和实验相结合的方法,以研究直流电和交流电驱动信号对液滴进行电子战的时空响应。使用高速摄影测量液滴形状的时间演变。计算流体动力学模型是通过使用“流体连续表面力”方法和选定的动态接触角模型来开发的。发现数值模型能够准确预测电润湿引起的液滴动力学的关键参数。

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