Slip at the surface of a translating–rotating sphere bisected by a free surface bounding a semi-infinite viscous fluid: Removal of the contact-line singularity
Author:
Publisher
AIP Publishing
Subject
General Engineering
Reference53 articles.
1. Conservation and constitutive equations for adsorbed species undergoing surface diffusion and convection at a fluid-fluid interface
2. Coupling between the translational and rotational brownian motions of rigid particles of arbitrary shape
3. Hydrodynamic model of steady movement of a solid/liquid/fluid contact line
4. On the motion of a fluid-fluid interface along a solid surface
5. The moving contact line: the slip boundary condition
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