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Dissipative Particle Dynamics Simulation of Droplet Oscillations in AC Electrowetting

机译:交流电润湿中液滴振荡的耗散粒子动力学模拟

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摘要

A mesoscopic model is developed to investigate the oscillations of a sub-micrometer droplet in AC electrowetting based on dissipative particle dynamics. To simulate the effects of the applied AC voltage, we vary the interaction between the solid and liquid particles aiming to recover me contact angles obeying the Lippmann-Young equation. The low frequency flow obtained in the present study is consistent qualitatively with previous experimental measurement. For the intermediate frequency voltage, generally no significant movement is found inside the droplet except fluid oscillatory motion near the contact line. The contact line dynamics is investigated as well, in which the results show the hysteresis phenomenon of contact line movement, and the phase difference between the applied voltage variation and the contact line oscillation generally increases with the AC frequency except for some resonance frequencies. Furthermore, the amplitude of the contact line is found to decrease linearly on a logarithmic scale with the applied frequency.
机译:建立了介观模型,以基于耗散粒子动力学研究交流电润湿过程中亚微米液滴的振荡。为了模拟施加的交流电压的影响,我们改变了固体和液体颗粒之间的相互作用,目的是遵循Lippmann-Young方程式恢复接触角。在本研究中获得的低频流量与先前的实验测量在质量上是一致的。对于中频电压,除了在接触线附近的流体振荡运动之外,通常在液滴内部没有发现明显的运动。还研究了接触线动力学,结果显示了接触线运动的滞后现象,除了某些谐振频率外,施加电压变化和接触线振荡之间的相位差通常随交流频率而增加。此外,发现接触线的振幅随着所施加的频率以对数刻度线性减小。

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