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Derivation of a continuum model and the energy law for moving contact lines with insoluble surfactants

Publication ,  Journal Article
Zhang, Z; Xu, S; Ren, W
Published in: Physics of Fluids
June 5, 2014

A continuous model is derived for the dynamics of two immiscible fluids with moving contact lines and insoluble surfactants based on thermodynamic principles. The continuum model consists of the Navier-Stokes equations for the dynamics of the two fluids and a convection-diffusion equation for the evolution of the surfactant on the fluid interface. The interface condition, the boundary condition for the slip velocity, and the condition for the dynamic contact angle are derived from the consideration of energy dissipations. Different types of energy dissipations, including the viscous dissipation, the dissipations on the solid wall and at the contact line, as well as the dissipation due to the diffusion of surfactant, are identified from the analysis. A finite element method is developed for the continuum model. Numerical experiments are performed to demonstrate the influence of surfactant on the contact line dynamics. The different types of energy dissipations are compared numerically. © 2014 AIP Publishing LLC.

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Published In

Physics of Fluids

DOI

EISSN

1089-7666

ISSN

1070-6631

Publication Date

June 5, 2014

Volume

26

Issue

6

Related Subject Headings

  • Fluids & Plasmas
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences
  • 01 Mathematical Sciences
 

Citation

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Zhang, Z., Xu, S., & Ren, W. (2014). Derivation of a continuum model and the energy law for moving contact lines with insoluble surfactants. Physics of Fluids, 26(6). https://doi.org/10.1063/1.4881195
Zhang, Z., S. Xu, and W. Ren. “Derivation of a continuum model and the energy law for moving contact lines with insoluble surfactants.” Physics of Fluids 26, no. 6 (June 5, 2014). https://doi.org/10.1063/1.4881195.
Zhang, Z., et al. “Derivation of a continuum model and the energy law for moving contact lines with insoluble surfactants.” Physics of Fluids, vol. 26, no. 6, June 2014. Scopus, doi:10.1063/1.4881195.

Published In

Physics of Fluids

DOI

EISSN

1089-7666

ISSN

1070-6631

Publication Date

June 5, 2014

Volume

26

Issue

6

Related Subject Headings

  • Fluids & Plasmas
  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering
  • 09 Engineering
  • 02 Physical Sciences
  • 01 Mathematical Sciences