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A numerical study on the dynamic behavior of the liquid located between pillar-shaped structures

机译:柱状结构之间的液体动力学行为的数值研究

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We numerically investigated the dynamic behavior of the liquid located between and on top of the structures using the 3D Lattice Bolzmann Method. We considered the effect of the contact angle between the structure and the liquid within the range of 90 to 180 degree, the dimensionless height of the structure between 4 and 8, and the dimensionless height of the liquid between 2 and 9 on the dynamic behavior of the liquid. Depending on the contact angle between the structure and the liquid and the relative heights of the liquid and the structure, the liquid takes the form of a liquid film or a liquid droplet. The bigger the contact angle between the structure surface and the liquid grows, the more the liquid existing between the structures moves to the top of the structure and forms a liquid droplet as time passes by. On the other hand, if the contact angle between the structure surface and the liquid is small, the liquid existing between the structures spreads between other structures and over the bottom of the structure and comes to form a liquid film at last. If the structure height is higher, the liquid is tied up between the structures and maintains the form of a liquid film. However, if the liquid height is higher, the liquid forms the shape of a liquid droplet on top of the structures easily.
机译:我们使用3D格子Bolzmann方法数值研究了位于结构之间和顶部的液体的动态行为。我们考虑了结构和液体之间的接触角在90至180度范围内,结构的无量纲高度在4和8之间以及液体的无量纲高度在2和9之间对动力学特性的影响。液体。根据结构和液体之间的接触角以及液体和结构的相对高度,液体采取液膜或液滴的形式。结构表面与液体之间的接触角越大,则随着时间的流逝,存在于结构之间的液体越会移至结构顶部并形成液滴。另一方面,如果结构表面与液体之间的接触角小,则存在于结构之间的液体在其他结构之间扩散并且在结构的底部上方扩散,最后形成液膜。如果结构高度较高,则液体会束缚在结构之间,并保持液膜的形式。然而,如果液体高度较高,则液体容易在结构的顶部上形成液滴的形状。

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