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Numerical Prediction of Contact Line Dynamics on Super-Hydrophobic Surfaces

机译:超疏水表面上接触线动力学的数值预测

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The current study numerically investigates the motion of droplets on a surface with a micro cavity using the Volume of Fluid (VOF) technique. The simulation is a precursor to droplet motion on super-hydrophobic surfaces which is the focus of surface engineering research in recent times. The advancing and receding contact angles are tracked as a droplet moves on a single cavity which can be seen as the space between two posts of a typical engineered super-hydrophobic surface. Stick-jump-slip behavior can be seen during the advancing motion of the drop and the reverse is seen during the receding motion. The contact angle evolution is studied for three different post geometries and it is concluded that wider post spacing leads to smaller dynamic contact angles. This study is important from the point of prediction of dynamic contact angles computationally on super-hydrophobic surfaces.
机译:当前的研究使用流体体积(VOF)技术以数字方式研究了具有微腔的液滴在表面上的运动。该模拟是超疏水表面上液滴运动的先驱,这是近来表面工程研究的重点。当液滴在单个空腔中移动时,可以跟踪前进和后退的接触角,可以将其视为典型工程化超疏水表面的两个立柱之间的空间。在液滴的前进运动中可以看到粘滞跳滑行为,而在后退运动中可以看到相反的现象。研究了三种不同立柱几何形状的接触角演变,并得出结论,越宽的立柱间距将导致较小的动态接触角。从计算超疏水表面上的动态接触角的角度出发,这项研究非常重要。

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