A geometric diffuse-interface method for droplet spreading

Author:

Holm Darryl D.1,Náraigh Lennon Ó2ORCID,Tronci Cesare34ORCID

Affiliation:

1. Department of Mathematics, Imperial College London, London SW7 2AZ, UK

2. School of Mathematics and Statistics, University College Dublin, Belfield, Dublin 4, Ireland

3. Department of Mathematics, University of Surrey, Guildford GU2 7XH, UK

4. Numerical Methods Division, Max Planck Institute for Plasma Physics, Garching 85748, Germany

Abstract

This paper exploits the theory of geometric gradient flows to introduce an alternative regularization of the thin-film equation valid in the case of large-scale droplet spreading—the geometric diffuse-interface method. The method possesses some advantages when compared with the existing models of droplet spreading, namely the slip model, the precursor-film method and the diffuse-interface model. These advantages are discussed and a case is made for using the geometric diffuse-interface method for the purpose of numerical simulations. The mathematical solutions of the geometric diffuse interface method are explored via such numerical simulations for the simple and well-studied case of large-scale droplet spreading for a perfectly wetting fluid—we demonstrate that the new method reproduces Tanner’s Law of droplet spreading via a simple and robust computational method, at a low computational cost. We discuss potential avenues for extending the method beyond the simple case of perfectly wetting fluids.

Funder

H2020 Marie Skłodowska-Curie Actions

Engineering and Physical Sciences Research Council

Alexander von Humboldt-Stiftung

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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