Numerical investigation of water drop movement within a microchannel under electrowetting phenomenon

Omid Izadpanahi, A. Meidani, Ghazale Jian Abed, M. Passandideh-Fard
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Abstract

The present study investigates the movement of water drop within a microchannel under electrowetting phenomenon. Electrowetting, by applying boundary (line) stress and the macroscopic variation in the contact angle of the surface, operates according to an electric field in order to manipulate small volumes of liquids. Applied electrostatic field makes the conducting drop to move in the direction of the field. Electrowetting phenomenon simulation has been done by application of OpenFoam software in Linux operating system and interFoam solver, by using the method of the volume of fluid (VOF). Numerical modeling has been compared with experimental results has been confirmed, and then has been investigated through three dimensional modeling of the movement of fluid drop in microchannels under electrowetting phenomenon with channel's different heights. An increase in microchannel height at fixed volume of water drop causes the velocity of drop to increase. The movement of the drops under the electrowetting phenomenon stimulation in climbing up the inclined plane in microchannels has been investigated through variable angle toward the horizon. Increasing microchannels angle with the horizon surface decrease the drop ascending velocity.
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电润湿现象下微通道内水滴运动的数值研究
本文研究了电润湿现象下微通道内水滴的运动。电润湿,通过施加边界(线)应力和表面接触角的宏观变化,根据电场来操作,以操纵小体积的液体。外加静电场使导电滴沿电场方向运动。利用Linux操作系统下的OpenFoam软件和interFoam求解器,采用流体体积法(VOF)对电润湿现象进行了模拟。将数值模拟结果与实验结果进行了比较,得到了验证,然后通过三维模型研究了不同通道高度下电润湿现象下微通道内液滴的运动。在水滴体积固定的情况下,微通道高度的增加会导致水滴速度的增加。研究了微通道中液滴在电润湿现象刺激下,以变角度向水平方向沿斜面爬升的运动规律。随着微通道与水平面的夹角增大,水滴上升速度减小。
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