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首页> 外文期刊>Annals of the New York Academy of Sciences >An Electrowetting Microvalve: Numerical Simulation
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An Electrowetting Microvalve: Numerical Simulation

机译:电润湿微阀:数值模拟

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摘要

Numerical simulation of a zero-leakage microvalve is investigated where a liquid droplet is used as a gate to regulate the flow in a T junction. The droplet gate is activated by changing its surface tension via an applied electric field. Numerical simulation of the droplet actuation is considered where the effect of electrowetting is imposed in the form of a modified boundary condition at the contact line. Numerical simulation is used to predict the droplet behavior and to design the valve. It is found that the pressure breakdown of the microvalve is significantly affected by the geometry of the T junction corners. It is expected that such a microvalve design will improve the sensitivity and performance of a wide variety of microfluidic devices.
机译:研究了零泄漏微阀的数值模拟,其中使用液滴作为浇口来调节T型接头的流量。液滴门通过施加电场改变其表面张力而被激活。考虑液滴驱动的数值模拟,其中在接触线上以修改的边界条件的形式施加电润湿的效果。数值模拟用于预测液滴行为并设计阀。已经发现,微型阀的压力破坏受到T型连接角的几何形状的显着影响。期望这种微阀设计将提高各种微流体装置的灵敏度和性能。

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