The Icelandic Low as a predictor of the Gulf Stream north wall position

The Gulf Stream’s Northwall east of Cape Hatteras marks the abrupt change in velocity and water properties between Slope Sea to the north and Gulf Stream itself. An index of the Northwall position constructed by Taylor and Stephens (1998), called GSNW, is analyzed in terms of interannual changes in...

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Published in:Journal of Physical Oceanography
Main Authors: Sanchez-Franks, Alejandra, Hameed, Sultan, Wilson, Robert E.
Format: Article in Journal/Newspaper
Language:English
Published: 2016
Subjects:
Online Access:https://eprints.soton.ac.uk/386942/
https://eprints.soton.ac.uk/386942/1/jpo-d-14-0244%25252E1.pdf
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spelling ftsouthampton:oai:eprints.soton.ac.uk:386942 2023-07-30T04:04:44+02:00 The Icelandic Low as a predictor of the Gulf Stream north wall position Sanchez-Franks, Alejandra Hameed, Sultan Wilson, Robert E. 2016-03 text https://eprints.soton.ac.uk/386942/ https://eprints.soton.ac.uk/386942/1/jpo-d-14-0244%25252E1.pdf en English eng https://eprints.soton.ac.uk/386942/1/jpo-d-14-0244%25252E1.pdf Sanchez-Franks, Alejandra, Hameed, Sultan and Wilson, Robert E. (2016) The Icelandic Low as a predictor of the Gulf Stream north wall position. Journal of Physical Oceanography, 46 (3), 817-826. (doi:10.1175/JPO-D-14-0244.1 <http://dx.doi.org/10.1175/JPO-D-14-0244.1>). Article PeerReviewed 2016 ftsouthampton https://doi.org/10.1175/JPO-D-14-0244.1 2023-07-09T22:04:25Z The Gulf Stream’s Northwall east of Cape Hatteras marks the abrupt change in velocity and water properties between Slope Sea to the north and Gulf Stream itself. An index of the Northwall position constructed by Taylor and Stephens (1998), called GSNW, is analyzed in terms of interannual changes in the Icelandic Low (IL) pressure anomaly and longitudinal displacement. Sea Surface Temperature (SST) composites suggest that when IL pressure is anomalously low, there are lower temperatures in the Labrador Sea and south of the Grand Banks. Two years later, warm SST anomalies are seen over the Northern Recirculation Gyre and a northward shift in the GSNW occurs. Similar changes in SSTs occur during winters in which the IL is anomalously west resulting in a northward displacement of the GSNW 3 years later. Although time lags of 2 and 3 years between the IL and the GSNW are used in the calculations, it is shown that lags with respect to each atmospheric variable are statistically significant at 5% level over a range of years. Utilizing the appropriate time lags between the GSNW index and the IL pressure and longitude, as well as the Southern Oscillation index, a regression-prediction scheme is developed for forecasting the GSNW with a lead-time of 1 year. This scheme, which uses only prior information, was used to forecast the GSNW from 1994 to 2015. The correlation between the observed and forecasted values for 1994-2014 was 0.60, significant at the 1% level. The predicted value for 2015 indicates a small northward shift of GSNW from its 2014 position. Article in Journal/Newspaper Labrador Sea University of Southampton: e-Prints Soton Journal of Physical Oceanography 46 3 817 826
institution Open Polar
collection University of Southampton: e-Prints Soton
op_collection_id ftsouthampton
language English
description The Gulf Stream’s Northwall east of Cape Hatteras marks the abrupt change in velocity and water properties between Slope Sea to the north and Gulf Stream itself. An index of the Northwall position constructed by Taylor and Stephens (1998), called GSNW, is analyzed in terms of interannual changes in the Icelandic Low (IL) pressure anomaly and longitudinal displacement. Sea Surface Temperature (SST) composites suggest that when IL pressure is anomalously low, there are lower temperatures in the Labrador Sea and south of the Grand Banks. Two years later, warm SST anomalies are seen over the Northern Recirculation Gyre and a northward shift in the GSNW occurs. Similar changes in SSTs occur during winters in which the IL is anomalously west resulting in a northward displacement of the GSNW 3 years later. Although time lags of 2 and 3 years between the IL and the GSNW are used in the calculations, it is shown that lags with respect to each atmospheric variable are statistically significant at 5% level over a range of years. Utilizing the appropriate time lags between the GSNW index and the IL pressure and longitude, as well as the Southern Oscillation index, a regression-prediction scheme is developed for forecasting the GSNW with a lead-time of 1 year. This scheme, which uses only prior information, was used to forecast the GSNW from 1994 to 2015. The correlation between the observed and forecasted values for 1994-2014 was 0.60, significant at the 1% level. The predicted value for 2015 indicates a small northward shift of GSNW from its 2014 position.
format Article in Journal/Newspaper
author Sanchez-Franks, Alejandra
Hameed, Sultan
Wilson, Robert E.
spellingShingle Sanchez-Franks, Alejandra
Hameed, Sultan
Wilson, Robert E.
The Icelandic Low as a predictor of the Gulf Stream north wall position
author_facet Sanchez-Franks, Alejandra
Hameed, Sultan
Wilson, Robert E.
author_sort Sanchez-Franks, Alejandra
title The Icelandic Low as a predictor of the Gulf Stream north wall position
title_short The Icelandic Low as a predictor of the Gulf Stream north wall position
title_full The Icelandic Low as a predictor of the Gulf Stream north wall position
title_fullStr The Icelandic Low as a predictor of the Gulf Stream north wall position
title_full_unstemmed The Icelandic Low as a predictor of the Gulf Stream north wall position
title_sort icelandic low as a predictor of the gulf stream north wall position
publishDate 2016
url https://eprints.soton.ac.uk/386942/
https://eprints.soton.ac.uk/386942/1/jpo-d-14-0244%25252E1.pdf
genre Labrador Sea
genre_facet Labrador Sea
op_relation https://eprints.soton.ac.uk/386942/1/jpo-d-14-0244%25252E1.pdf
Sanchez-Franks, Alejandra, Hameed, Sultan and Wilson, Robert E. (2016) The Icelandic Low as a predictor of the Gulf Stream north wall position. Journal of Physical Oceanography, 46 (3), 817-826. (doi:10.1175/JPO-D-14-0244.1 <http://dx.doi.org/10.1175/JPO-D-14-0244.1>).
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container_title Journal of Physical Oceanography
container_volume 46
container_issue 3
container_start_page 817
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