Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica

<jats:p>Abstract. Surface meltwater is widespread around the Antarctic Ice Sheet margin and has the potential to influence ice shelf stability, ice flow and ice–albedo feedbacks. Our understanding of the seasonal and multi-year evolution of Antarctic surface meltwater is limited. Attempts to g...

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Published in:The Cryosphere
Main Authors: Tuckett, Peter A, Ely, Jeremy C, Sole, Andrew J, Lea, James M, Livingstone, Stephen J, Jones, Julie M, van Wessem, J Melchior
Format: Article in Journal/Newspaper
Language:English
Published: Copernicus GmbH 2021
Subjects:
Online Access:http://livrepository.liverpool.ac.uk/3146698/
https://doi.org/10.5194/tc-15-5785-2021
http://livrepository.liverpool.ac.uk/3146698/1/Tuckett_2021_Amery_Manuscript_Final.docx
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spelling ftunivliverpool:oai:livrepository.liverpool.ac.uk:3146698 2023-05-15T13:22:04+02:00 Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica Tuckett, Peter A Ely, Jeremy C Sole, Andrew J Lea, James M Livingstone, Stephen J Jones, Julie M van Wessem, J Melchior 2021 text http://livrepository.liverpool.ac.uk/3146698/ https://doi.org/10.5194/tc-15-5785-2021 http://livrepository.liverpool.ac.uk/3146698/1/Tuckett_2021_Amery_Manuscript_Final.docx en eng Copernicus GmbH http://livrepository.liverpool.ac.uk/3146698/1/Tuckett_2021_Amery_Manuscript_Final.docx Tuckett, Peter A, Ely, Jeremy C, Sole, Andrew J, Lea, James M orcid:0000-0003-1885-0858 , Livingstone, Stephen J, Jones, Julie M and van Wessem, J Melchior (2021) Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica. CRYOSPHERE, 15 (12). pp. 5785-5804. Article NonPeerReviewed 2021 ftunivliverpool https://doi.org/10.5194/tc-15-5785-2021 2023-01-20T00:12:43Z <jats:p>Abstract. Surface meltwater is widespread around the Antarctic Ice Sheet margin and has the potential to influence ice shelf stability, ice flow and ice–albedo feedbacks. Our understanding of the seasonal and multi-year evolution of Antarctic surface meltwater is limited. Attempts to generate robust meltwater cover time series have largely been constrained by computational expense or limited ice surface visibility associated with mapping from optical satellite imagery. Here, we add a novel method for calculating visibility metrics to an existing meltwater detection method within Google Earth Engine. This enables us to quantify uncertainty induced by cloud cover and variable image data coverage, allowing time series of surface meltwater area to be automatically generated over large spatial and temporal scales. We demonstrate our method on the Amery Ice Shelf region of East Antarctica, analysing 4164 Landsat 7 and 8 optical images between 2005 and 2020. Results show high interannual variability in surface meltwater cover, with mapped cumulative lake area totals ranging from 384 to 3898 km2 per melt season. By incorporating image visibility assessments, however, we estimate that cumulative total lake areas are on average 42 % higher than minimum mapped values. We show that modelled melt predictions from a regional climate model provide a good indication of lake cover in the Amery region and that annual lake coverage is typically highest in years with a negative austral summer SAM index. Our results demonstrate that our method could be scaled up to generate a multi-year time series record of surface water extent from optical imagery at a continent-wide scale. </jats:p> Article in Journal/Newspaper Amery Ice Shelf Antarc* Antarctic Antarctica East Antarctica Ice Sheet Ice Shelf The University of Liverpool Repository Amery ENVELOPE(-94.063,-94.063,56.565,56.565) Amery Ice Shelf ENVELOPE(71.000,71.000,-69.750,-69.750) Antarctic Austral East Antarctica The Antarctic The Cryosphere 15 12 5785 5804
institution Open Polar
collection The University of Liverpool Repository
op_collection_id ftunivliverpool
language English
description <jats:p>Abstract. Surface meltwater is widespread around the Antarctic Ice Sheet margin and has the potential to influence ice shelf stability, ice flow and ice–albedo feedbacks. Our understanding of the seasonal and multi-year evolution of Antarctic surface meltwater is limited. Attempts to generate robust meltwater cover time series have largely been constrained by computational expense or limited ice surface visibility associated with mapping from optical satellite imagery. Here, we add a novel method for calculating visibility metrics to an existing meltwater detection method within Google Earth Engine. This enables us to quantify uncertainty induced by cloud cover and variable image data coverage, allowing time series of surface meltwater area to be automatically generated over large spatial and temporal scales. We demonstrate our method on the Amery Ice Shelf region of East Antarctica, analysing 4164 Landsat 7 and 8 optical images between 2005 and 2020. Results show high interannual variability in surface meltwater cover, with mapped cumulative lake area totals ranging from 384 to 3898 km2 per melt season. By incorporating image visibility assessments, however, we estimate that cumulative total lake areas are on average 42 % higher than minimum mapped values. We show that modelled melt predictions from a regional climate model provide a good indication of lake cover in the Amery region and that annual lake coverage is typically highest in years with a negative austral summer SAM index. Our results demonstrate that our method could be scaled up to generate a multi-year time series record of surface water extent from optical imagery at a continent-wide scale. </jats:p>
format Article in Journal/Newspaper
author Tuckett, Peter A
Ely, Jeremy C
Sole, Andrew J
Lea, James M
Livingstone, Stephen J
Jones, Julie M
van Wessem, J Melchior
spellingShingle Tuckett, Peter A
Ely, Jeremy C
Sole, Andrew J
Lea, James M
Livingstone, Stephen J
Jones, Julie M
van Wessem, J Melchior
Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
author_facet Tuckett, Peter A
Ely, Jeremy C
Sole, Andrew J
Lea, James M
Livingstone, Stephen J
Jones, Julie M
van Wessem, J Melchior
author_sort Tuckett, Peter A
title Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
title_short Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
title_full Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
title_fullStr Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
title_full_unstemmed Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica
title_sort automated mapping of the seasonal evolution of surface meltwater and its links to climate on the amery ice shelf, antarctica
publisher Copernicus GmbH
publishDate 2021
url http://livrepository.liverpool.ac.uk/3146698/
https://doi.org/10.5194/tc-15-5785-2021
http://livrepository.liverpool.ac.uk/3146698/1/Tuckett_2021_Amery_Manuscript_Final.docx
long_lat ENVELOPE(-94.063,-94.063,56.565,56.565)
ENVELOPE(71.000,71.000,-69.750,-69.750)
geographic Amery
Amery Ice Shelf
Antarctic
Austral
East Antarctica
The Antarctic
geographic_facet Amery
Amery Ice Shelf
Antarctic
Austral
East Antarctica
The Antarctic
genre Amery Ice Shelf
Antarc*
Antarctic
Antarctica
East Antarctica
Ice Sheet
Ice Shelf
genre_facet Amery Ice Shelf
Antarc*
Antarctic
Antarctica
East Antarctica
Ice Sheet
Ice Shelf
op_relation http://livrepository.liverpool.ac.uk/3146698/1/Tuckett_2021_Amery_Manuscript_Final.docx
Tuckett, Peter A, Ely, Jeremy C, Sole, Andrew J, Lea, James M orcid:0000-0003-1885-0858 , Livingstone, Stephen J, Jones, Julie M and van Wessem, J Melchior (2021) Automated mapping of the seasonal evolution of surface meltwater and its links to climate on the Amery Ice Shelf, Antarctica. CRYOSPHERE, 15 (12). pp. 5785-5804.
op_doi https://doi.org/10.5194/tc-15-5785-2021
container_title The Cryosphere
container_volume 15
container_issue 12
container_start_page 5785
op_container_end_page 5804
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