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Prediction of droplet dynamics on an incline

机译:斜面上液滴动态的预测

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Droplet motion is important in discrete microfluidic operations as well as in emerging site-specific cooling techniques based on electrowetting. The present work reports on carefully characterized experiments that map the shape, advancing and receding contact angles, and contact area of droplets sliding under gravitational actuation as a function of droplet size and velocity. A pseudo-Lagrangian methodology based on the Volume Of Fluid - Continuous Surface Force (VOF-CSF) model is developed to simulate droplet motion down an incline. The model is benchmarked against 2D stationary reference-frame simulations. The terminal velocity of droplets on an incline is predicted and is in good agreement with in-house experimental measurements. The effect of using different contact angle models on the terminal velocity predictions is investigated. The numerical solution is highly sensitive to the contact angle boundary condition. The internal fluid motion in moving droplets is also explained.
机译:液滴运动在离散的微流体操作以及新兴的基于电润湿的特定地点冷却技术中都很重要。本工作报告了精心表征的实验,这些实验绘制了液滴的形状,前进和后退接触角以及在重力作用下滑动的液滴接触面积与液滴大小和速度的函数关系。开发了一种基于流体体积-连续表面力(VOF-CSF)模型的伪拉格朗日方法,以模拟液滴沿向下倾斜的运动。该模型针对2D固定参考框架仿真进行了基准测试。可以预测液滴在倾斜面上的最终速度,并且与室内实验测量结果非常吻合。研究了使用不同接触角模型对终端速度预测的影响。数值解对接触角边界条件高度敏感。还说明了运动液滴中的内部流体运动。

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