4.7 Article

A Model for Soap Film Dynamics with Evolving Thickness

期刊

ACM TRANSACTIONS ON GRAPHICS
卷 39, 期 4, 页码 -

出版社

ASSOC COMPUTING MACHINERY
DOI: 10.1145/3386569.3392405

关键词

Soap films; Fluid dynamics; Physical modeling

资金

  1. Scientific Service Units (SSU) of IST Austria
  2. European Research Council (ERC) under the European Union's Horizon 2020 research and innovation programme [638176]

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Previous research on animations of soap bubbles, films, and foams largely focuses on the motion and geometric shape of the bubble surface. These works neglect the evolution of the bubble's thickness, which is normally responsible for visual phenomena like surface vortices, Newton's interference patterns, capillary waves, and deformation-dependent rupturing of films in a foam. In this paper, we model these natural phenomena by introducing the film thickness as a reduced degree of freedom in the Navier-Stokes equations and deriving their equations of motion. We discretize the equations on a nonmanifold triangle mesh surface and couple it to an existing bubble solver. In doing so, we also introduce an incompressible fluid solver for 2.5D films and a novel advection algorithm for convecting fields across non-manifold surface junctions. Our simulations enhance state-of-the-art bubble solvers with additional effects caused by convection, rippling, draining, and evaporation of the thin film.

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