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Numerical Simulation of Static and Dynamic Electrowetting

机译:静态和动态电润湿的数值模拟

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摘要

We review numerical methods developed by the authors for the study of both static and dynamic electrowetting problems. For the study of static problems that can be written in terms of minimization of an energy, a boundary integral method for the computation of charge density distributions is developed. We illustrate its use with the computation of static shapes of charged drops over a flat surface and under the influence of an external potential. For the study of dynamic problems, where drops can move over a solid substrate we develop a phase-field model. Such models replace the sharp interfaces between two fluids by a so-called diffuse interface. We illustrate the use of the phase-field model with the calculation of drops spreading and moving in an electrowetting system.
机译:我们回顾了由作者开发的用于研究静态和动态电润湿问题的数值方法。为了研究可以用最小化能量来写的静态问题,开发了一种用于计算电荷密度分布的边界积分方法。我们通过在平坦表面上以及在外部电势的影响下计算带电液滴的静态形状来说明其用法。为了研究动态问题,液滴可以在固体基质上移动,因此我们开发了一个相场模型。这种模型用所谓的扩散界面代替了两种流体之间的尖锐界面。我们通过在电子润湿系统中计算液滴散布和移动的过程,说明了相场模型的使用。

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