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Numerical modeling of microscale droplet dispensing in parallel-plate electrowetting-on-dielectric (EWOD) devices with various reservoir designs

机译:带有各种容器设计的平行板电介质上电润湿(EWOD)装置中微滴液滴分配的数值模型

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摘要

Water droplet dispensing in microfluidic parallel-plate electrowetting-on-dielectric (EWOD) devices with various reservoir designs has been numerically studied. The Navier-Stokes equations are solved using a finite-volume formulation with a two-step projection method on a fixed grid. The free surface of the liquid is tracked by a coupled level set and volume-of-fluid method with the surface tension force determined by the continuum surface force model. Contact angle hysteresis which is an indispensible element in EWOD modeling has been implemented. A simplified model is adopted for the viscous stresses exerted by the parallel plates at the solid-liquid interface. Good agreement has been achieved between the numerical results and the corresponding experimental data. The dispensing mechanism has been carefully examined, and droplet volume inconsistency for each design has been investigated. It has been discovered that the pressure distribution on the cutting electrode at the beginning of the cutting stage is of considerable significance for the inconsistency of droplet volumes. Several key elements which directly affect the pressure distribution and volume inconsistency have been identified.
机译:已经对具有各种储层设计的微流体平行板电介质上电润湿(EWOD)设备中的水滴分配进行了数值研究。 Navier-Stokes方程使用有限体积公式在固定网格上采用两步投影方法求解。液体的自由表面通过液位和流体体积耦合方法进行跟踪,其表面张力由连续表面力模型确定。接触角滞后是EWOD建模中必不可少的要素。对于平行板在固液界面处施加的粘性应力,采用简化模型。数值结果与相应的实验数据之间已经取得了很好的一致性。仔细检查了分配机制,并研究了每种设计的液滴体积不一致情况。已经发现,在切割阶段开始时切割电极上的压力分布对于液滴体积的不一致具有相当重要的意义。已经确定了几个直接影响压力分布和体积不一致的关键因素。

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