Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation

ABSTRACT The surface wind regime of the Ross Ice Shelf ( RIS ) is dominated by northward outflow influenced by drainage from both East and West Antarctica and synoptic disturbances over the Ross Sea. To quantify the effects of the wind regime on the climate of the region, we produce a synoptic clima...

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Published in:International Journal of Climatology
Main Authors: Coggins, Jack H. J., McDonald, Adrian J., Jolly, Ben
Other Authors: New Zealand Ministry of Foreign Affairs and Trade, Ross Sea Dependency Scholarship, University of Canterbury Doctoral Scholarship
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2013
Subjects:
Online Access:http://dx.doi.org/10.1002/joc.3842
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fjoc.3842
https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.3842
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spelling crwiley:10.1002/joc.3842 2024-09-15T17:48:41+00:00 Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation Coggins, Jack H. J. McDonald, Adrian J. Jolly, Ben New Zealand Ministry of Foreign Affairs and Trade Ross Sea Dependency Scholarship University of Canterbury Doctoral Scholarship 2013 http://dx.doi.org/10.1002/joc.3842 https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fjoc.3842 https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.3842 en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor International Journal of Climatology volume 34, issue 7, page 2330-2348 ISSN 0899-8418 1097-0088 journal-article 2013 crwiley https://doi.org/10.1002/joc.3842 2024-08-27T04:30:04Z ABSTRACT The surface wind regime of the Ross Ice Shelf ( RIS ) is dominated by northward outflow influenced by drainage from both East and West Antarctica and synoptic disturbances over the Ross Sea. To quantify the effects of the wind regime on the climate of the region, we produce a synoptic climatology of the RIS and Ross Sea via a k ‐means clustering technique applied to surface (10 m) winds from the ERA Interim reanalysis (1979–2011). We describe the generation of the climatology and discuss composites of surface winds, mean sea‐level pressure and temperature, which show a high degree of internally consistent structure and are similar to previous synoptic climatologies. While some small‐scale features are not fully resolved by the reanalysis, such as the channelling of katabatic flows, we identify a high degree of coherence between clustering results and available in situ data sources, suggesting that the ERA Interim represents the region well. We find that the surface wind field of the ice shelf is highly sensitive to the strength and position of cyclonic disturbances in the Ross Sea, the presence of which can aid outflow from the continental interior. Temperature displays a high level of sensitivity to circulation conditions due to the effects of steep temperature gradients surrounding the shelf and advective heat transport. Cold temperatures on the ice shelf coincide with drainage from East Antarctica, while warmer periods coincide with West Antarctic drainage; this is particularly clear during RIS air stream ( RAS ) events. The warmest periods occur during southward transport from the Ross Sea. The sensitivity of temperature to the origin of flows suggests circulation changes in the region are likely to significantly impact surface climate. Analysis of the frequency of varying synoptic events and their persistence confirms RAS is a very common and persistent feature of the region. Article in Journal/Newspaper Antarc* Antarctic Antarctica East Antarctica Ice Shelf Ross Ice Shelf Ross Sea West Antarctica Wiley Online Library International Journal of Climatology 34 7 2330 2348
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description ABSTRACT The surface wind regime of the Ross Ice Shelf ( RIS ) is dominated by northward outflow influenced by drainage from both East and West Antarctica and synoptic disturbances over the Ross Sea. To quantify the effects of the wind regime on the climate of the region, we produce a synoptic climatology of the RIS and Ross Sea via a k ‐means clustering technique applied to surface (10 m) winds from the ERA Interim reanalysis (1979–2011). We describe the generation of the climatology and discuss composites of surface winds, mean sea‐level pressure and temperature, which show a high degree of internally consistent structure and are similar to previous synoptic climatologies. While some small‐scale features are not fully resolved by the reanalysis, such as the channelling of katabatic flows, we identify a high degree of coherence between clustering results and available in situ data sources, suggesting that the ERA Interim represents the region well. We find that the surface wind field of the ice shelf is highly sensitive to the strength and position of cyclonic disturbances in the Ross Sea, the presence of which can aid outflow from the continental interior. Temperature displays a high level of sensitivity to circulation conditions due to the effects of steep temperature gradients surrounding the shelf and advective heat transport. Cold temperatures on the ice shelf coincide with drainage from East Antarctica, while warmer periods coincide with West Antarctic drainage; this is particularly clear during RIS air stream ( RAS ) events. The warmest periods occur during southward transport from the Ross Sea. The sensitivity of temperature to the origin of flows suggests circulation changes in the region are likely to significantly impact surface climate. Analysis of the frequency of varying synoptic events and their persistence confirms RAS is a very common and persistent feature of the region.
author2 New Zealand Ministry of Foreign Affairs and Trade
Ross Sea Dependency Scholarship
University of Canterbury Doctoral Scholarship
format Article in Journal/Newspaper
author Coggins, Jack H. J.
McDonald, Adrian J.
Jolly, Ben
spellingShingle Coggins, Jack H. J.
McDonald, Adrian J.
Jolly, Ben
Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
author_facet Coggins, Jack H. J.
McDonald, Adrian J.
Jolly, Ben
author_sort Coggins, Jack H. J.
title Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
title_short Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
title_full Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
title_fullStr Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
title_full_unstemmed Synoptic climatology of the Ross Ice Shelf and Ross Sea region of Antarctica: k‐means clustering and validation
title_sort synoptic climatology of the ross ice shelf and ross sea region of antarctica: k‐means clustering and validation
publisher Wiley
publishDate 2013
url http://dx.doi.org/10.1002/joc.3842
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1002%2Fjoc.3842
https://rmets.onlinelibrary.wiley.com/doi/pdf/10.1002/joc.3842
genre Antarc*
Antarctic
Antarctica
East Antarctica
Ice Shelf
Ross Ice Shelf
Ross Sea
West Antarctica
genre_facet Antarc*
Antarctic
Antarctica
East Antarctica
Ice Shelf
Ross Ice Shelf
Ross Sea
West Antarctica
op_source International Journal of Climatology
volume 34, issue 7, page 2330-2348
ISSN 0899-8418 1097-0088
op_rights http://onlinelibrary.wiley.com/termsAndConditions#vor
op_doi https://doi.org/10.1002/joc.3842
container_title International Journal of Climatology
container_volume 34
container_issue 7
container_start_page 2330
op_container_end_page 2348
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