Abstract
The steady-state velocity field generated at a fluid interface by a slowly rotating disk of radius
a
thrust into that interface is solved in laminar flow approximation. The theory takes full account of the hydrodynamic coupling between the internal viscosity
μ
of the substrate with the surface viscosity
η
of an adsorbed surface film. Results are presented in graphical form of the interfacial velocity field near the rim of the disk for various values of the dimensional ratio
η/μα
.
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