On the origin of time-dependent behaviour in a barotropically unstable shear layer

An experimental study on the instability of a detached Stewartson layer, using an annular, rotating tank with flat, rigid upper and lower boundaries, showed an instability to steady vortices at a critical Reynolds number, arranged in a global mode structure along the shear layer. Increasing the...

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Main Authors: W.-G. Früh, A. H. Nielsen
Format: Article
Language:English
Published: Copernicus Publications 2003-01-01
Series:Nonlinear Processes in Geophysics
Online Access:http://www.nonlin-processes-geophys.net/10/289/2003/npg-10-289-2003.pdf
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spelling doaj-62bac47d2ff545529863be0f2f9a0fa32020-11-24T23:20:51ZengCopernicus PublicationsNonlinear Processes in Geophysics1023-58091607-79462003-01-01103289302On the origin of time-dependent behaviour in a barotropically unstable shear layerW.-G. FrühA. H. NielsenAn experimental study on the instability of a detached Stewartson layer, using an annular, rotating tank with flat, rigid upper and lower boundaries, showed an instability to steady vortices at a critical Reynolds number, arranged in a global mode structure along the shear layer. Increasing the Reynolds number resulted in successive transitions to lower modes where time-dependent behaviour was only found for flows with three or less vortices. Previous numerical simulations of a related experiment, using a two-dimensional spectral model of the quasi-geostrophic vorticity equation incorporating Ekman forcing and viscous dissipation, suggested that the boundary conditions at the inner cylinder of the domain could significantly affect the interior flow by the generation and shedding of vorticity at this inner boundary. A comparison of the numerical results with experimental data suggests that the rise of time-dependent behaviour is due to vorticity generation at the inner domain boundary.http://www.nonlin-processes-geophys.net/10/289/2003/npg-10-289-2003.pdf
collection DOAJ
language English
format Article
sources DOAJ
author W.-G. Früh
A. H. Nielsen
spellingShingle W.-G. Früh
A. H. Nielsen
On the origin of time-dependent behaviour in a barotropically unstable shear layer
Nonlinear Processes in Geophysics
author_facet W.-G. Früh
A. H. Nielsen
author_sort W.-G. Früh
title On the origin of time-dependent behaviour in a barotropically unstable shear layer
title_short On the origin of time-dependent behaviour in a barotropically unstable shear layer
title_full On the origin of time-dependent behaviour in a barotropically unstable shear layer
title_fullStr On the origin of time-dependent behaviour in a barotropically unstable shear layer
title_full_unstemmed On the origin of time-dependent behaviour in a barotropically unstable shear layer
title_sort on the origin of time-dependent behaviour in a barotropically unstable shear layer
publisher Copernicus Publications
series Nonlinear Processes in Geophysics
issn 1023-5809
1607-7946
publishDate 2003-01-01
description An experimental study on the instability of a detached Stewartson layer, using an annular, rotating tank with flat, rigid upper and lower boundaries, showed an instability to steady vortices at a critical Reynolds number, arranged in a global mode structure along the shear layer. Increasing the Reynolds number resulted in successive transitions to lower modes where time-dependent behaviour was only found for flows with three or less vortices. Previous numerical simulations of a related experiment, using a two-dimensional spectral model of the quasi-geostrophic vorticity equation incorporating Ekman forcing and viscous dissipation, suggested that the boundary conditions at the inner cylinder of the domain could significantly affect the interior flow by the generation and shedding of vorticity at this inner boundary. A comparison of the numerical results with experimental data suggests that the rise of time-dependent behaviour is due to vorticity generation at the inner domain boundary.
url http://www.nonlin-processes-geophys.net/10/289/2003/npg-10-289-2003.pdf
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