A three-dimensional numerical scheme for modeling three-phase contact line pinning using Smoothed Particle Hydrodynamics

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Main Authors: Nayak, Subrat Kumar, Bhattacharya, Amitabh, Nair, Prapanch
Format: Preprint
Published: 2025
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author Nayak, Subrat Kumar
Bhattacharya, Amitabh
Nair, Prapanch
author_facet Nayak, Subrat Kumar
Bhattacharya, Amitabh
Nair, Prapanch
contents In several capillary dynamics experiments, the liquid domain is confined by pinning the three-phase contact line along a sharp edge or a discontinuity on the substrate. Simulating the dynamics of pinned droplets can offer valuable insights into capillary flow phenomena involving wetting of inhomogeneous substrates. However, Eulerian multi-phase flow solvers are usually not able to directly implement pinning of three-phase contact lines. We present the implementation of a model for pinning the contact line of a liquid along an arbitrary pinning curve on the substrate, in an updated Lagrangian, meshless flow solver based on the smoothed particle hydrodynamics (SPH) method. We develop the pinning model for a continuum surface force scheme and assume a free surface for the liquid-gas interface. We validate the model against several capillary dynamics experiments involving pinned three phase contact lines with fixed and dynamic substrates to demonstrate the robustness and accuracy of the solver.
format Preprint
id arxiv_https___arxiv_org_abs_2509_10159
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A three-dimensional numerical scheme for modeling three-phase contact line pinning using Smoothed Particle Hydrodynamics
Nayak, Subrat Kumar
Bhattacharya, Amitabh
Nair, Prapanch
Fluid Dynamics
Computational Physics
In several capillary dynamics experiments, the liquid domain is confined by pinning the three-phase contact line along a sharp edge or a discontinuity on the substrate. Simulating the dynamics of pinned droplets can offer valuable insights into capillary flow phenomena involving wetting of inhomogeneous substrates. However, Eulerian multi-phase flow solvers are usually not able to directly implement pinning of three-phase contact lines. We present the implementation of a model for pinning the contact line of a liquid along an arbitrary pinning curve on the substrate, in an updated Lagrangian, meshless flow solver based on the smoothed particle hydrodynamics (SPH) method. We develop the pinning model for a continuum surface force scheme and assume a free surface for the liquid-gas interface. We validate the model against several capillary dynamics experiments involving pinned three phase contact lines with fixed and dynamic substrates to demonstrate the robustness and accuracy of the solver.
title A three-dimensional numerical scheme for modeling three-phase contact line pinning using Smoothed Particle Hydrodynamics
topic Fluid Dynamics
Computational Physics
url https://arxiv.org/abs/2509.10159