Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review
This review paper is the first to collect and synthesise the available knowledge, across various disciplines, on the importance of wintertime freshwater inflow from tidewater glaciers into Arctic fjords. While surface melt is limited during winter, tidewater glaciers can continue to deliver freshwat...
Published in: | Progress in Oceanography |
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Main Authors: | , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
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2023
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Online Access: | https://pure.au.dk/portal/da/publications/impact-of-winter-freshwater-from-tidewater-glaciers-on-fjords-in-svalbard-and-greenland(3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4).html https://doi.org/10.1016/j.pocean.2023.103144 http://www.scopus.com/inward/record.url?scp=85175202756&partnerID=8YFLogxK |
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ftuniaarhuspubl:oai:pure.atira.dk:publications/3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4 2023-12-31T10:03:17+01:00 Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review Vonnahme, Tobias Reiner Nowak, Aga Hopwood, Mark James Meire, Lorenz Søgaard, Dorte H. Krawczyk, Diana Kalhagen, Kjersti Juul-Pedersen, Thomas 2023-12 https://pure.au.dk/portal/da/publications/impact-of-winter-freshwater-from-tidewater-glaciers-on-fjords-in-svalbard-and-greenland(3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4).html https://doi.org/10.1016/j.pocean.2023.103144 http://www.scopus.com/inward/record.url?scp=85175202756&partnerID=8YFLogxK eng eng https://pure.au.dk/portal/da/publications/impact-of-winter-freshwater-from-tidewater-glaciers-on-fjords-in-svalbard-and-greenland(3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4).html info:eu-repo/semantics/openAccess Vonnahme , T R , Nowak , A , Hopwood , M J , Meire , L , Søgaard , D H , Krawczyk , D , Kalhagen , K & Juul-Pedersen , T 2023 , ' Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland : A review ' , Progress in Oceanography , vol. 219 , 103144 . https://doi.org/10.1016/j.pocean.2023.103144 Coastal circulation Fjord dynamics Greenland Runoff Subglacial discharge Submarine glacier melt Svalbard Winter article 2023 ftuniaarhuspubl https://doi.org/10.1016/j.pocean.2023.103144 2023-12-07T00:06:40Z This review paper is the first to collect and synthesise the available knowledge, across various disciplines, on the importance of wintertime freshwater inflow from tidewater glaciers into Arctic fjords. While surface melt is limited during winter, tidewater glaciers can continue to deliver freshwater into the marine environment. This can be delivered via subglacial discharge or produced by submarine melt. Subglacial freshwater can be generated all year round through geothermal and frictional heat and delayed release of subglacially-stored freshwater. Submarine melt in Arctic fjords is caused by the presence of warm water such as Atlantic Water and its derivative coastal water masses. The dynamics of the contributing water masses are subject to varying bathymetric barriers, seasonally shifting density fronts, and external forcing such as wind or internal waves. Their impact is variable across different fjord systems. When other terrestrial water influx is limited during winter, any glacier-derived freshwater inflow into the fjords can have pronounced physical and biogeochemical consequences, even at low fluxes. These can include the generation of upwelling, but also increased stratification. The extent of the freshwater influence depends on parameters such as discharge volume flux, water depth, and depth of the glacier termini, which might in turn affect ice algae and phytoplankton production during the early spring bloom. Coupling of winter freshwater discharge from tidewater glaciers with the physical and biogeochemical conditions of the fjord is therefore a dynamic multivariable process. Rapidly changing wintertime conditions in the Arctic may already be impacting the functioning of the Arctic fjord ecosystems and necessitate efforts to understand these processes better. This review highlights the importance of wintertime freshwater by summarising the current state of knowledge about its presence and magnitude, drivers governing its inputs, as well as its potential ecological impact on fjord ecosystems. Our ... Article in Journal/Newspaper Arctic glacier glacier Greenland ice algae Phytoplankton Svalbard Tidewater Aarhus University: Research Progress in Oceanography 219 103144 |
institution |
Open Polar |
collection |
Aarhus University: Research |
op_collection_id |
ftuniaarhuspubl |
language |
English |
topic |
Coastal circulation Fjord dynamics Greenland Runoff Subglacial discharge Submarine glacier melt Svalbard Winter |
spellingShingle |
Coastal circulation Fjord dynamics Greenland Runoff Subglacial discharge Submarine glacier melt Svalbard Winter Vonnahme, Tobias Reiner Nowak, Aga Hopwood, Mark James Meire, Lorenz Søgaard, Dorte H. Krawczyk, Diana Kalhagen, Kjersti Juul-Pedersen, Thomas Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
topic_facet |
Coastal circulation Fjord dynamics Greenland Runoff Subglacial discharge Submarine glacier melt Svalbard Winter |
description |
This review paper is the first to collect and synthesise the available knowledge, across various disciplines, on the importance of wintertime freshwater inflow from tidewater glaciers into Arctic fjords. While surface melt is limited during winter, tidewater glaciers can continue to deliver freshwater into the marine environment. This can be delivered via subglacial discharge or produced by submarine melt. Subglacial freshwater can be generated all year round through geothermal and frictional heat and delayed release of subglacially-stored freshwater. Submarine melt in Arctic fjords is caused by the presence of warm water such as Atlantic Water and its derivative coastal water masses. The dynamics of the contributing water masses are subject to varying bathymetric barriers, seasonally shifting density fronts, and external forcing such as wind or internal waves. Their impact is variable across different fjord systems. When other terrestrial water influx is limited during winter, any glacier-derived freshwater inflow into the fjords can have pronounced physical and biogeochemical consequences, even at low fluxes. These can include the generation of upwelling, but also increased stratification. The extent of the freshwater influence depends on parameters such as discharge volume flux, water depth, and depth of the glacier termini, which might in turn affect ice algae and phytoplankton production during the early spring bloom. Coupling of winter freshwater discharge from tidewater glaciers with the physical and biogeochemical conditions of the fjord is therefore a dynamic multivariable process. Rapidly changing wintertime conditions in the Arctic may already be impacting the functioning of the Arctic fjord ecosystems and necessitate efforts to understand these processes better. This review highlights the importance of wintertime freshwater by summarising the current state of knowledge about its presence and magnitude, drivers governing its inputs, as well as its potential ecological impact on fjord ecosystems. Our ... |
format |
Article in Journal/Newspaper |
author |
Vonnahme, Tobias Reiner Nowak, Aga Hopwood, Mark James Meire, Lorenz Søgaard, Dorte H. Krawczyk, Diana Kalhagen, Kjersti Juul-Pedersen, Thomas |
author_facet |
Vonnahme, Tobias Reiner Nowak, Aga Hopwood, Mark James Meire, Lorenz Søgaard, Dorte H. Krawczyk, Diana Kalhagen, Kjersti Juul-Pedersen, Thomas |
author_sort |
Vonnahme, Tobias Reiner |
title |
Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
title_short |
Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
title_full |
Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
title_fullStr |
Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
title_full_unstemmed |
Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland:A review |
title_sort |
impact of winter freshwater from tidewater glaciers on fjords in svalbard and greenland:a review |
publishDate |
2023 |
url |
https://pure.au.dk/portal/da/publications/impact-of-winter-freshwater-from-tidewater-glaciers-on-fjords-in-svalbard-and-greenland(3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4).html https://doi.org/10.1016/j.pocean.2023.103144 http://www.scopus.com/inward/record.url?scp=85175202756&partnerID=8YFLogxK |
genre |
Arctic glacier glacier Greenland ice algae Phytoplankton Svalbard Tidewater |
genre_facet |
Arctic glacier glacier Greenland ice algae Phytoplankton Svalbard Tidewater |
op_source |
Vonnahme , T R , Nowak , A , Hopwood , M J , Meire , L , Søgaard , D H , Krawczyk , D , Kalhagen , K & Juul-Pedersen , T 2023 , ' Impact of winter freshwater from tidewater glaciers on fjords in Svalbard and Greenland : A review ' , Progress in Oceanography , vol. 219 , 103144 . https://doi.org/10.1016/j.pocean.2023.103144 |
op_relation |
https://pure.au.dk/portal/da/publications/impact-of-winter-freshwater-from-tidewater-glaciers-on-fjords-in-svalbard-and-greenland(3ac6ec1b-a99a-4a1f-9d73-1311a3e44fa4).html |
op_rights |
info:eu-repo/semantics/openAccess |
op_doi |
https://doi.org/10.1016/j.pocean.2023.103144 |
container_title |
Progress in Oceanography |
container_volume |
219 |
container_start_page |
103144 |
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1786819941130829824 |