Shear layers in a rotating fluid
- 18 July 1967
- journal article
- research article
- Published by Cambridge University Press (CUP) in Journal of Fluid Mechanics
- Vol. 29 (1) , 165-175
- https://doi.org/10.1017/s0022112067000692
Abstract
A homogeneous fluid of viscosityvis confined between two co-axial disks (vertical separationH) which rotate relative to a rotating system (angular velocity Ω). The resulting velocity field is studied for values of the parameterv/2ΩH2in the range 1·6 × 10−2to 1·8 × 10−3. The Rossby number, defined as the ratio of the relative angular velocity of the disks to the angular velocity of the system, ranged from 0·038 to 0·0041. The dependence of the resulting velocity field (interior and boundary-layer flow) on geometrical parameters, imposed surface and bottom velocities, and Ω, is in good agreement with the calculations of Stewartson and Carrier. In particular, when the two disks rotate with the same angular velocity, the width of the vertical shear layer at the edge of the disks is found to be proportional to Ω−0·25±0·02. When the disks rotate in opposite senses, a shear layer in the vertical velocity is observed which transports fluid from one disk to the other and whose width is proportional to Ω−0·40±0·10. The magnitude and shape of the observed vertical velocity is in fair agreement with a numerical integration of the theoretical results.Keywords
This publication has 4 references indexed in Scilit:
- A technique for the precise measurement of small fluid velocitiesJournal of Fluid Mechanics, 1966
- Phenomena in rotating fluidsPublished by Springer Nature ,1966
- Some effects of stratification and geometry in rotating fluidsJournal of Fluid Mechanics, 1965
- On almost rigid rotationsJournal of Fluid Mechanics, 1957