Axisymmetric creeping motion of a slip spherical particle in a nonconcentric spherical cavity
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Publication:407768
DOI10.1007/s00162-010-0181-yzbMath1234.76013OpenAlexW2078007444MaRDI QIDQ407768
Publication date: 27 March 2012
Published in: Theoretical and Computational Fluid Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00162-010-0181-y
Related Items (17)
Slow motion of a spherical particle in a spherical cavity with slip surfaces ⋮ MOTION OF A SLIP SPHERE IN A NONCONCENTRIC FICTITIOUS SPHERICAL ENVELOPE OF MICROPOLAR FLUID ⋮ Interaction of two spherical particles rotating in a micropolar fluid ⋮ Stokes flow between two confocal rotating spheroids with slip ⋮ Cell models for micropolar flow past a viscous fluid sphere ⋮ Stokes flow between eccentric rotating spheres with slip regime ⋮ Single-particle dynamics in a low-Reynolds-number fluid under spherical confinement ⋮ Creeping motion of a fluid drop inside a spherical cavity ⋮ Osmophoresis of a spherical vesicle in a spherical cavity ⋮ Creeping-flow rotation of a slip spheroid about its axis of revolution ⋮ Cell models for viscous flow past a swarm of Reiner-Rivlin liquid spherical drops ⋮ Slow steady rotation of an approximate sphere in an approximate spherical container with slip surfaces ⋮ Stokes flow past an assemblage of slip eccentric spherical particle-in-cell models ⋮ Slow rotation of a spherical particle in an eccentric spherical cavity with slip surfaces ⋮ Axisymmetric motion of a slip spherical particle in the presence of a Brinkman interface with stress jump ⋮ Unsteady rotational motion of a slip spherical particle in a viscous fluid ⋮ Low-Reynolds-number rotation of a soft particle inside an eccentric cavity
Cites Work
- Slip at the surface of a sphere translating perpendicular to a plane wall in micropolar fluid
- Application of the Cercignani-Lampis scattering kernel to calculations of rarefied gas flows. II: Slip and jump coefficients.
- On the Boundary Condition at the Surface of a Porous Medium
- Velocity slip and temperature jump coefficients for gaseous mixtures. I. Viscous slip coefficient
- Velocity slip in microscale cylindrical Couette flow: The Langmuir model
- Low reynolds number motion of a droplet between two parallel plates
- The flow fields in and around a droplet moving axially within a tube
- A new technique for treating multiparticle slow viscous flow: axisymmetric flow past spheres and spheroids
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