Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum

The last deglaciation of the Laurentide Ice Sheet (LIS) was associated with major reorganisations in the ocean-climate system and its retreat also represents a valuable analogue for understanding the rates and mechanisms of ice sheet collapse. This paper reviews the characteristics of the LIS at its...

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Published in:Cuadernos de Investigación Geográfica
Main Author: Stokes, Ch.R.
Format: Article in Journal/Newspaper
Language:English
Published: Universidad de La Rioja 2017
Subjects:
Online Access:https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237
https://doi.org/10.18172/cig.3237
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spelling ftunivriojaojs:oai:ojs.www.unirioja.es:article/3237 2024-10-13T14:05:49+00:00 Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum La deglaciación del inlandsis Lauréntide desde el Último Máximo Glaciar Stokes, Ch.R. 2017-09-15 application/pdf https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237 https://doi.org/10.18172/cig.3237 eng eng Universidad de La Rioja https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237/2905 https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237 doi:10.18172/cig.3237 Derechos de autor 2017 Ch.R. Stokes Cuadernos de Investigación Geográfica; Vol. 43 No. 2 (2017); 377-428 Cuadernos de Investigación Geográfica; Vol. 43 Núm. 2 (2017); 377-428 1697-9540 0211-6820 10.18172/cig.vol43iss2 Laurentide Ice Sheet Last Glacial Maximum deglaciation ice streams Inlandsis Lauréntide Último Máximo Glaciar deglaciación ríos de hielo info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion 2017 ftunivriojaojs https://doi.org/10.18172/cig.323710.18172/cig.vol43iss2 2024-09-18T23:40:51Z The last deglaciation of the Laurentide Ice Sheet (LIS) was associated with major reorganisations in the ocean-climate system and its retreat also represents a valuable analogue for understanding the rates and mechanisms of ice sheet collapse. This paper reviews the characteristics of the LIS at its Last Glacial Maximum (LGM) and its subsequent deglaciation, with particular emphasis on the pattern and timing of ice margin recession and the driving mechanisms of retreat. The LIS initiated over the eastern Canadian Arctic ~116-110 ka (MIS 5d), but its growth towards the LGM was highly non-linear and punctuated by several episodes of expansion (~65 ka: MIS 4) and retreat (~50-40 ka: MIS 3). It attained its maximum position around 26-25 ka (MIS 2) and existed for several thousand years as an extensive ice sheet with major domes over Keewatin, Foxe Basin and northern Quebec/Labrador. It extended to the edge of the continental shelf at its marine margins and likely stored a sea-level equivalent of around 50 m and with a maximum ice surface ~3,000 m above present sea-level. Retreat from its maximum was triggered by an increase in boreal summer insolation, but areal shrinkage was initially slow and the net surface mass balance was positive, indicating that ice streams likely played an important role in reducing the ice sheet volume, if not its extent, via calving at marine margins. Between ~16 and ~13 ka, the ice sheet margin retreated more rapidly, particularly in the south and west, whereas the north and east underwent only minimal recession. The overall rate of retreat decreased during the Younger Dryas (YD), when several localised readvances occurred. Following the YD, the ice sheet retreated two to five times faster than previously, and this was primarily driven by enhanced surface melting while ice streams reduced in effectiveness. Final deglaciation of the Keewatin and Foxe Domes, left a remnant Labrador Dome that disappeared ~6.7 ka. La última deglaciación del inlandsis Lauréntide (LIS) estuvo relacionada con ... Article in Journal/Newspaper Arctic Foxe Basin Ice Sheet Inlandsis Keewatin Portal de Revistas de la Universidad de La Rioja Arctic Foxe Basin ENVELOPE(-77.918,-77.918,65.931,65.931) Hielo ENVELOPE(-58.133,-58.133,-62.083,-62.083) Cuadernos de Investigación Geográfica 43 2 377 428
institution Open Polar
collection Portal de Revistas de la Universidad de La Rioja
op_collection_id ftunivriojaojs
language English
topic Laurentide Ice Sheet
Last Glacial Maximum
deglaciation
ice streams
Inlandsis Lauréntide
Último Máximo Glaciar
deglaciación
ríos de hielo
spellingShingle Laurentide Ice Sheet
Last Glacial Maximum
deglaciation
ice streams
Inlandsis Lauréntide
Último Máximo Glaciar
deglaciación
ríos de hielo
Stokes, Ch.R.
Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
topic_facet Laurentide Ice Sheet
Last Glacial Maximum
deglaciation
ice streams
Inlandsis Lauréntide
Último Máximo Glaciar
deglaciación
ríos de hielo
description The last deglaciation of the Laurentide Ice Sheet (LIS) was associated with major reorganisations in the ocean-climate system and its retreat also represents a valuable analogue for understanding the rates and mechanisms of ice sheet collapse. This paper reviews the characteristics of the LIS at its Last Glacial Maximum (LGM) and its subsequent deglaciation, with particular emphasis on the pattern and timing of ice margin recession and the driving mechanisms of retreat. The LIS initiated over the eastern Canadian Arctic ~116-110 ka (MIS 5d), but its growth towards the LGM was highly non-linear and punctuated by several episodes of expansion (~65 ka: MIS 4) and retreat (~50-40 ka: MIS 3). It attained its maximum position around 26-25 ka (MIS 2) and existed for several thousand years as an extensive ice sheet with major domes over Keewatin, Foxe Basin and northern Quebec/Labrador. It extended to the edge of the continental shelf at its marine margins and likely stored a sea-level equivalent of around 50 m and with a maximum ice surface ~3,000 m above present sea-level. Retreat from its maximum was triggered by an increase in boreal summer insolation, but areal shrinkage was initially slow and the net surface mass balance was positive, indicating that ice streams likely played an important role in reducing the ice sheet volume, if not its extent, via calving at marine margins. Between ~16 and ~13 ka, the ice sheet margin retreated more rapidly, particularly in the south and west, whereas the north and east underwent only minimal recession. The overall rate of retreat decreased during the Younger Dryas (YD), when several localised readvances occurred. Following the YD, the ice sheet retreated two to five times faster than previously, and this was primarily driven by enhanced surface melting while ice streams reduced in effectiveness. Final deglaciation of the Keewatin and Foxe Domes, left a remnant Labrador Dome that disappeared ~6.7 ka. La última deglaciación del inlandsis Lauréntide (LIS) estuvo relacionada con ...
format Article in Journal/Newspaper
author Stokes, Ch.R.
author_facet Stokes, Ch.R.
author_sort Stokes, Ch.R.
title Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
title_short Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
title_full Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
title_fullStr Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
title_full_unstemmed Deglaciation of the Laurentide Ice Sheet from the Last Glacial Maximum
title_sort deglaciation of the laurentide ice sheet from the last glacial maximum
publisher Universidad de La Rioja
publishDate 2017
url https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237
https://doi.org/10.18172/cig.3237
long_lat ENVELOPE(-77.918,-77.918,65.931,65.931)
ENVELOPE(-58.133,-58.133,-62.083,-62.083)
geographic Arctic
Foxe Basin
Hielo
geographic_facet Arctic
Foxe Basin
Hielo
genre Arctic
Foxe Basin
Ice Sheet
Inlandsis
Keewatin
genre_facet Arctic
Foxe Basin
Ice Sheet
Inlandsis
Keewatin
op_source Cuadernos de Investigación Geográfica; Vol. 43 No. 2 (2017); 377-428
Cuadernos de Investigación Geográfica; Vol. 43 Núm. 2 (2017); 377-428
1697-9540
0211-6820
10.18172/cig.vol43iss2
op_relation https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237/2905
https://publicaciones.unirioja.es/ojs/index.php/cig/article/view/3237
doi:10.18172/cig.3237
op_rights Derechos de autor 2017 Ch.R. Stokes
op_doi https://doi.org/10.18172/cig.323710.18172/cig.vol43iss2
container_title Cuadernos de Investigación Geográfica
container_volume 43
container_issue 2
container_start_page 377
op_container_end_page 428
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