Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6930250 | Journal of Computational Physics | 2016 | 23 Pages |
Abstract
Multi-color Stochastic Rotation Dynamics (SRDmc) has been introduced by Inoue et al. [1], [2] as a particle based simulation method to study the flow of emulsion droplets in non-wetting microchannels. In this work, we extend the multi-color method to also account for different wetting conditions. This is achieved by assigning the color information not only to fluid particles but also to virtual wall particles that are required to enforce proper no-slip boundary conditions. To extend the scope of the original SRDmc algorithm to e.g. immiscible two-phase flow with viscosity contrast we implement an angular momentum conserving scheme (SRD+mc). We perform extensive benchmark simulations to show that a mono-phase SRDmc fluid exhibits bulk properties identical to a standard SRD fluid and that SRDmc fluids are applicable to a wide range of immiscible two-phase flows. To quantify the adhesion of a SRD+mc fluid in contact to the walls we measure the apparent contact angle from sessile droplets in mechanical equilibrium. For a further verification of our wettability implementation we compare the dewetting of a liquid film from a wetting stripe to experimental and numerical studies of interfacial morphologies on chemically structured surfaces.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Science Applications
Authors
Thomas Hiller, Marta Sanchez de La Lama, Martin Brinkmann,