The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array

An analysis ismade of data from 30 Aanderaa recording currentmeters (RCMs) set on ninemoorings located east of Cape Farewell, the southern tip of Greenland. The purpose of the measurements was to allow for the estimation of transport in the deep western boundary current (DWBC) below a depth of about...

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Published in:Journal of Physical Oceanography
Main Authors: Bacon, Sheldon, Saunders, Peter M.
Format: Article in Journal/Newspaper
Language:unknown
Published: 2010
Subjects:
Online Access:https://eprints.soton.ac.uk/69444/
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spelling ftsouthampton:oai:eprints.soton.ac.uk:69444 2023-07-30T04:02:53+02:00 The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array Bacon, Sheldon Saunders, Peter M. 2010 https://eprints.soton.ac.uk/69444/ unknown Bacon, Sheldon and Saunders, Peter M. (2010) The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array. Journal of Physical Oceanography, 40 (4), 815-829. (doi:10.1175/2009JPO4091.1 <http://dx.doi.org/10.1175/2009JPO4091.1>). Article PeerReviewed 2010 ftsouthampton https://doi.org/10.1175/2009JPO4091.1 2023-07-09T21:06:45Z An analysis ismade of data from 30 Aanderaa recording currentmeters (RCMs) set on ninemoorings located east of Cape Farewell, the southern tip of Greenland. The purpose of the measurements was to allow for the estimation of transport in the deep western boundary current (DWBC) below a depth of about 1500 m. The records commenced in September 2005 and lasted from9.5 to 11.5months.After calibration of the rawdata, 12-h averages of temperature and current were derived and the latter employed to estimate the flow across and along the array direction. The 9.5-month average transport of water colder than 38Cwas found to be 7.8 Sv (1 Sv[13 106 m3 s21) with a standard error of 0.8 Sv. For water denser than su527.85 kg m23, the transport is calculated as 4.5 Sv. Whether either of these values is significantly different fromcomparablemeasurementsmade 500 km upstream cannot be determined. In marked contrast, for su . 27.8 kg m23, the transport is estimated as only 9.0 Sv, smaller than the widely accepted value of 13 Sv for nearby measurements made in 1978. A reevaluation of the calculations and assumptions made then allows one to determine the uncertainty of the earlier estimate and thereby conclude that the difference between the previous and present measurements is significant, that is, that the transport has decreased between 1978 and 2005–06. Aweakening of the transport during the 9.5-month period is also observed, along with a warming and an increase in salinity in the core of the DWBC. These latter changes are shown to be consistent with interannual variability rather than a long-term trend. Article in Journal/Newspaper Cape Farewell Greenland University of Southampton: e-Prints Soton Greenland Journal of Physical Oceanography 40 4 815 829
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language unknown
description An analysis ismade of data from 30 Aanderaa recording currentmeters (RCMs) set on ninemoorings located east of Cape Farewell, the southern tip of Greenland. The purpose of the measurements was to allow for the estimation of transport in the deep western boundary current (DWBC) below a depth of about 1500 m. The records commenced in September 2005 and lasted from9.5 to 11.5months.After calibration of the rawdata, 12-h averages of temperature and current were derived and the latter employed to estimate the flow across and along the array direction. The 9.5-month average transport of water colder than 38Cwas found to be 7.8 Sv (1 Sv[13 106 m3 s21) with a standard error of 0.8 Sv. For water denser than su527.85 kg m23, the transport is calculated as 4.5 Sv. Whether either of these values is significantly different fromcomparablemeasurementsmade 500 km upstream cannot be determined. In marked contrast, for su . 27.8 kg m23, the transport is estimated as only 9.0 Sv, smaller than the widely accepted value of 13 Sv for nearby measurements made in 1978. A reevaluation of the calculations and assumptions made then allows one to determine the uncertainty of the earlier estimate and thereby conclude that the difference between the previous and present measurements is significant, that is, that the transport has decreased between 1978 and 2005–06. Aweakening of the transport during the 9.5-month period is also observed, along with a warming and an increase in salinity in the core of the DWBC. These latter changes are shown to be consistent with interannual variability rather than a long-term trend.
format Article in Journal/Newspaper
author Bacon, Sheldon
Saunders, Peter M.
spellingShingle Bacon, Sheldon
Saunders, Peter M.
The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
author_facet Bacon, Sheldon
Saunders, Peter M.
author_sort Bacon, Sheldon
title The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
title_short The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
title_full The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
title_fullStr The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
title_full_unstemmed The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array
title_sort deep western boundary current at cape farewell: results from a moored current meter array
publishDate 2010
url https://eprints.soton.ac.uk/69444/
geographic Greenland
geographic_facet Greenland
genre Cape Farewell
Greenland
genre_facet Cape Farewell
Greenland
op_relation Bacon, Sheldon and Saunders, Peter M. (2010) The Deep Western Boundary Current at Cape Farewell: results from a moored current meter array. Journal of Physical Oceanography, 40 (4), 815-829. (doi:10.1175/2009JPO4091.1 <http://dx.doi.org/10.1175/2009JPO4091.1>).
op_doi https://doi.org/10.1175/2009JPO4091.1
container_title Journal of Physical Oceanography
container_volume 40
container_issue 4
container_start_page 815
op_container_end_page 829
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