论文标题
稳定的移动接触线在无防滑基板上
Steady moving contact line of water over a no-slip substrate
论文作者
论文摘要
三重接触线的运动在多孔培养基中的许多应用中起着至关重要的作用,例如喷墨印刷,液体涂料和排水(Imbibition)。为了为这些应用设计准确的计算工具,需要进行移动接触线的预测模型。但是,尚未充分理解导致三重接触线运动的基本机制,但仍在辩论中。我们研究了在低毛细血管数状态下,在稳定条件下,水,蒸气和二氧化硅样固体表面之间的接触线运动。我们使用与原子水模型的分子动力学(MD)模拟两个移动板之间的纳米镜滴。我们包括水分子和固体底物之间的氢键,这导致了亚分子滑动的长度。我们基准了两种连续方法,即Cahn-Hilliard相田(PF)模型和一个针对MD结果的流体量(VOF)模型。我们表明,两个连续模型都可以很好地重现从MD获得的统计措施,并在精度上进行权衡。我们证明了相位场迁移率参数的重要性和局部滑移长度在准确建模移动接触线中的重要性。
The movement of the triple contact line plays a crucial role in many applications such as ink-jet printing, liquid coating and drainage (imbibition) in porous media. To design accurate computational tools for these applications, predictive models of the moving contact line are needed. However, the basic mechanisms responsible for movement of the triple contact line are not well understood but still debated. We investigate the movement of the contact line between water, vapour and a silica-like solid surface under steady conditions in low capillary number regime. We use molecular dynamics (MD) with an atomistic water model to simulate a nanoscopic drop between two moving plates. We include hydrogen bonding between the water molecules and the solid substrate, which leads to a sub-molecular slip length. We benchmark two continuum methods, the Cahn-Hilliard phase-field (PF) model and a volume-of-fluid (VOF) model, against MD results. We show that both continuum models can reproduce the statistical measures obtained from MD reasonably well, with a trade-off in accuracy. We demonstrate the importance of the phase field mobility parameter and the local slip length in accurately modelling the moving contact line.