Steady viscous flow near a stationary contact line

Author:

Proudman Ian,Asadullah Mir

Abstract

The paper presents the asymptotic solution, near a stationary contact line at a plane boundary, for steady viscous incompressible flow of two immiscible liquids. The eigenvalues which determine this Stokes flow are determined by the contact angle α of the more viscous liquid and the ratio μ of the two viscosities. The dominant eigenvalues are found for all values of α and μ. As μ → 0 the results agree with those of Moffatt's (1964) one-phase theory for the case μ = 0 only when α > 81°. For α < 81° the two sets of results are qualitatively different. In particular, the eddy structure corresponding to complex eigenvalues occurs only in the α-range (34°, 81°). As μ increases from 0 to 1, this range steadily decreases to zero, which is located at 60°. The transport of energy across the liquid interface is almost always from the obtuse-angled sector to the acute-angled sector, irrespective of α, μ, and the location of the global power supply.

Publisher

Cambridge University Press (CUP)

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics

Reference5 articles.

1. Dean, W. R. & Montagnon, P. E. 1949 On the steady motion of viscous liquid in a corner.Proc. Camb. Phil. Soc. 45,389–394.

2. Moffatt, H. K. & Duffy, B. R. 1980 Local similarity solutions and their limitations.J. Fluid Mech. 96,299–313.

3. Asadullah, M. 1986 Viscous flow near a stationary contact line. Ph.D. dissertation,University of Essex.

4. Moffatt, H. K. 1964 Viscous and resistive eddies near a sharp corner.J. Fluid Mech. 18,1–18.

5. Hooper, A. , Duffy, B. R. & Moffatt, H. K. 1982 Flow of fluid of non-uniform viscosity in converging and diverging channels.J. Fluid. Mech. 117,283–304.

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