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Growing surfactant waves in thin liquid films driven by gravity

Publication ,  Journal Article
Witelski, TP; Shearer, M; Levy, R
Published in: Applied Mathematics Research eXpress
December 1, 2006

The dynamics of a gravity-driven thin film flow with insoluble surfactant are described in the lubrication approximation by a coupled system of nonlinear PDEs. When the total quantity of surfactant is fixed, a traveling wave solution exists. For the case of constantflux of surfactant from an upstream reservoir, global traveling waves no longer exist as the surfactant accumulates at the leading edge of the thin film profile. The dynamics can be described using matched asymptotic expansions for t→∞ . The solution is constructed from quasistatically evolving traveling waves. The rate of growth of the surfactant profile is shown to be O(√t) and is supported by numerical simulations.

Duke Scholars

Published In

Applied Mathematics Research eXpress

DOI

EISSN

1687-1197

ISSN

1687-1200

Publication Date

December 1, 2006

Volume

2006

Related Subject Headings

  • General Mathematics
  • 0102 Applied Mathematics
 

Citation

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Witelski, T. P., Shearer, M., & Levy, R. (2006). Growing surfactant waves in thin liquid films driven by gravity. Applied Mathematics Research EXpress, 2006. https://doi.org/10.1155/AMRX/2006/15487
Witelski, T. P., M. Shearer, and R. Levy. “Growing surfactant waves in thin liquid films driven by gravity.” Applied Mathematics Research EXpress 2006 (December 1, 2006). https://doi.org/10.1155/AMRX/2006/15487.
Witelski TP, Shearer M, Levy R. Growing surfactant waves in thin liquid films driven by gravity. Applied Mathematics Research eXpress. 2006 Dec 1;2006.
Witelski, T. P., et al. “Growing surfactant waves in thin liquid films driven by gravity.” Applied Mathematics Research EXpress, vol. 2006, Dec. 2006. Scopus, doi:10.1155/AMRX/2006/15487.
Witelski TP, Shearer M, Levy R. Growing surfactant waves in thin liquid films driven by gravity. Applied Mathematics Research eXpress. 2006 Dec 1;2006.
Journal cover image

Published In

Applied Mathematics Research eXpress

DOI

EISSN

1687-1197

ISSN

1687-1200

Publication Date

December 1, 2006

Volume

2006

Related Subject Headings

  • General Mathematics
  • 0102 Applied Mathematics