Multiple Zonal Jets in a Differentially Heated Rotating Annulus

A laboratory experiment of multiple baroclinic zonal jets is described, thought to be dynamically similar to flow observed in the Antarctic Circumpolar Current. Differential heating sets the overall temperature difference and drives unstable baroclinic flow, but the circulation is free to determine...

Full description

Bibliographic Details
Published in:Journal of Physical Oceanography
Main Authors: Smith, Carlowen, Speer, Kevin G, Griffiths, Ross
Format: Article in Journal/Newspaper
Language:unknown
Published: American Meteorological Society
Subjects:
Online Access:http://hdl.handle.net/1885/58315
https://doi.org/10.1175/JPO-D-13-0255.1
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/5/Griffiths_2014_Multiple_zonal.pdf.jpg
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/7/01_Smith_Multiple_Zonal_Jets_in_a_2014.pdf.jpg
id ftanucanberra:oai:openresearch-repository.anu.edu.au:1885/58315
record_format openpolar
spelling ftanucanberra:oai:openresearch-repository.anu.edu.au:1885/58315 2024-01-14T09:59:42+01:00 Multiple Zonal Jets in a Differentially Heated Rotating Annulus Smith, Carlowen Speer, Kevin G Griffiths, Ross http://hdl.handle.net/1885/58315 https://doi.org/10.1175/JPO-D-13-0255.1 https://openresearch-repository.anu.edu.au/bitstream/1885/58315/5/Griffiths_2014_Multiple_zonal.pdf.jpg https://openresearch-repository.anu.edu.au/bitstream/1885/58315/7/01_Smith_Multiple_Zonal_Jets_in_a_2014.pdf.jpg unknown American Meteorological Society 0022-3670 http://hdl.handle.net/1885/58315 doi:10.1175/JPO-D-13-0255.1 https://openresearch-repository.anu.edu.au/bitstream/1885/58315/5/Griffiths_2014_Multiple_zonal.pdf.jpg https://openresearch-repository.anu.edu.au/bitstream/1885/58315/7/01_Smith_Multiple_Zonal_Jets_in_a_2014.pdf.jpg Author/s retain copyright Journal of Physical Oceanography Journal article ftanucanberra https://doi.org/10.1175/JPO-D-13-0255.1 2023-12-15T09:38:21Z A laboratory experiment of multiple baroclinic zonal jets is described, thought to be dynamically similar to flow observed in the Antarctic Circumpolar Current. Differential heating sets the overall temperature difference and drives unstable baroclinic flow, but the circulation is free to determine its own structure and local stratification; experiments were run to a stationary state and extend the dynamical regime of previous experiments. Atopographic analog to the planetary β effect is imposed by the gradient of fluid depth with radius supplied by a sloping bottom and a parabolic free surface. New regimes of a low thermal Rossby number (RoT ~ 10-3) and high Taylor number (Ta ~ 1011) are explored such that the deformation radius Lp is much smaller than the annulus gap width L and similar to the Rhines length. Multiple jets emerge in rough proportion to the smallness of the Rhines scale, relatively insensitive to the Taylor number; a regime diagram taking the β effect into account better reflects the emergence of the jets. Eddy momentum fluxes are consistent with an active role in maintaining the jets, and jet development appears to follow the Vallis and Maltrud phenomenology of anisotropic wave-turbulence interaction on a ß plane. Intermittency and episodes of coherent meridional jet migration occur, especially during spinup. Article in Journal/Newspaper Antarc* Antarctic Australian National University: ANU Digital Collections Antarctic The Antarctic Journal of Physical Oceanography 44 9 2273 2291
institution Open Polar
collection Australian National University: ANU Digital Collections
op_collection_id ftanucanberra
language unknown
description A laboratory experiment of multiple baroclinic zonal jets is described, thought to be dynamically similar to flow observed in the Antarctic Circumpolar Current. Differential heating sets the overall temperature difference and drives unstable baroclinic flow, but the circulation is free to determine its own structure and local stratification; experiments were run to a stationary state and extend the dynamical regime of previous experiments. Atopographic analog to the planetary β effect is imposed by the gradient of fluid depth with radius supplied by a sloping bottom and a parabolic free surface. New regimes of a low thermal Rossby number (RoT ~ 10-3) and high Taylor number (Ta ~ 1011) are explored such that the deformation radius Lp is much smaller than the annulus gap width L and similar to the Rhines length. Multiple jets emerge in rough proportion to the smallness of the Rhines scale, relatively insensitive to the Taylor number; a regime diagram taking the β effect into account better reflects the emergence of the jets. Eddy momentum fluxes are consistent with an active role in maintaining the jets, and jet development appears to follow the Vallis and Maltrud phenomenology of anisotropic wave-turbulence interaction on a ß plane. Intermittency and episodes of coherent meridional jet migration occur, especially during spinup.
format Article in Journal/Newspaper
author Smith, Carlowen
Speer, Kevin G
Griffiths, Ross
spellingShingle Smith, Carlowen
Speer, Kevin G
Griffiths, Ross
Multiple Zonal Jets in a Differentially Heated Rotating Annulus
author_facet Smith, Carlowen
Speer, Kevin G
Griffiths, Ross
author_sort Smith, Carlowen
title Multiple Zonal Jets in a Differentially Heated Rotating Annulus
title_short Multiple Zonal Jets in a Differentially Heated Rotating Annulus
title_full Multiple Zonal Jets in a Differentially Heated Rotating Annulus
title_fullStr Multiple Zonal Jets in a Differentially Heated Rotating Annulus
title_full_unstemmed Multiple Zonal Jets in a Differentially Heated Rotating Annulus
title_sort multiple zonal jets in a differentially heated rotating annulus
publisher American Meteorological Society
url http://hdl.handle.net/1885/58315
https://doi.org/10.1175/JPO-D-13-0255.1
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/5/Griffiths_2014_Multiple_zonal.pdf.jpg
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/7/01_Smith_Multiple_Zonal_Jets_in_a_2014.pdf.jpg
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_source Journal of Physical Oceanography
op_relation 0022-3670
http://hdl.handle.net/1885/58315
doi:10.1175/JPO-D-13-0255.1
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/5/Griffiths_2014_Multiple_zonal.pdf.jpg
https://openresearch-repository.anu.edu.au/bitstream/1885/58315/7/01_Smith_Multiple_Zonal_Jets_in_a_2014.pdf.jpg
op_rights Author/s retain copyright
op_doi https://doi.org/10.1175/JPO-D-13-0255.1
container_title Journal of Physical Oceanography
container_volume 44
container_issue 9
container_start_page 2273
op_container_end_page 2291
_version_ 1788060368934797312