论文标题

多相晶格玻尔兹曼方法的弯曲润湿表面上的接触角度测量

Contact angle measurement on curved wetting surface in multiphase lattice Boltzmann method

论文作者

Liu, Yangsha, Yao, Yichen, Li, Quanying, Wen, Binghai

论文摘要

接触角是表征底物润湿性的必不可少的物理量。尽管它被广泛用于表面润湿,毛细血管现象和移动接触线的研究,但测量实验和模拟中的接触角仍然很复杂且耗时。在本文中,我们提出了一个有效的方案,用于在晶格Boltzmann模拟中对弯曲润湿表面的接触角进行实时和现场测量。测量结果与球形帽法的理论预测非常吻合,而无需考虑重力效应。一系列具有各种滴大小和表面曲率的模拟证实了目前的方案是与网格无关的。然后,通过模拟弯曲润湿表面上的无孔和吊坠的变形来对其进行验证。数值结果与实验观察结果高度一致,并支持了显微镜接触角与重力无关的理论分析。此外,该方案用于捕获均质或化学异质弯曲表面上的动态接触角滞后。重要的是,准确的接触角度测量可以在移动接触线时进行机械分析。目前的测量是简单有效的,可以扩展以在各种多相晶格Boltzmann模型中实现。

Contact angle is an essential physical quantity that characterizes the wettability of a substrate. Although it is widely used in the studies of surface wetting, capillary phenomena and moving contact lines, measuring contact angles in experiments and simulations is still complicated and time-consuming. In this paper, we present an efficient scheme for the real-time and on-the-spot measurement of contact angles on curved wetting surfaces in lattice Boltzmann simulations. The measuring results are in excellent agreement with the theoretical predictions by the spherical cap method without considering the gravity effect. A series of the simulations with various drop sizes and surface curvatures confirm that the present scheme is grid-independent. Then, it is verified in gravitational environments by simulating the deformations of sessile and pendent droplets on the curved wetting surface. The numerical results are highly consistent with experimental observations and support the theoretical analysis that the microscopic contact angle is independent of gravity. Furthermore, the scheme is applied to capture the dynamic contact angle hysteresis on homogeneous or chemically heterogeneous curved surfaces. Importantly, the accurate contact angle measurement enables the mechanical analysis at moving contact lines. The present measurement is simple and efficient, and can be extended to implement in various multiphase lattice Boltzmann models.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源