Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland
Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite altimetry data, are used to quantify the temporal and spatial variability of the North Icelandic Irminger Current (NIIC), East Icelandic Current (EIC), and the water masses they advect around northern...
Published in: | Journal of Geophysical Research: Oceans |
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Main Authors: | , , , , , , , , , , , |
Format: | Article in Journal/Newspaper |
Language: | English |
Published: |
AGU
2020
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Subjects: | |
Online Access: | https://hdl.handle.net/11250/2766171 https://doi.org/10.1029/2020JC016283 |
_version_ | 1821498344606793728 |
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author | Casanova-Masjoan, M Perez-Hernandez, MD Pickart, Robert S. Valdimarsson, Héðinn Ólafsdóttir, SR Macrander, Andreas Grisolía-Santos, D Torres, Daniel J. Jónsson, Steingrímur Våge, Kjetil Lin, Peigen Hernández-Guerra, A |
author_facet | Casanova-Masjoan, M Perez-Hernandez, MD Pickart, Robert S. Valdimarsson, Héðinn Ólafsdóttir, SR Macrander, Andreas Grisolía-Santos, D Torres, Daniel J. Jónsson, Steingrímur Våge, Kjetil Lin, Peigen Hernández-Guerra, A |
author_sort | Casanova-Masjoan, M |
collection | University of Bergen: Bergen Open Research Archive (BORA-UiB) |
container_issue | 9 |
container_title | Journal of Geophysical Research: Oceans |
container_volume | 125 |
description | Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite altimetry data, are used to quantify the temporal and spatial variability of the North Icelandic Irminger Current (NIIC), East Icelandic Current (EIC), and the water masses they advect around northern Iceland. We focus on the warm, salty Atlantic Water (AW) flowing northward through Denmark Strait and the cooler, fresher, denser Atlantic-origin Overflow Water (AtOW) which has circulated cyclonically around the rim of the Nordic Seas before being advected to the Iceland slope via the EIC. The absolute geostrophic velocities reveal that approximately half of the NIIC recirculates just north of Denmark Strait, while the remaining half merges with the EIC to form a single current that extends to the northeast of Iceland, with no further loss in transport of either component. The AW percentage decreases by 75% over this distance, while the AtOW percentage is higher than that of the AW in the merged current. The NIIC and merged NIIC-EIC are found to be baroclinically unstable, which causes the flow to become increasingly barotropic as it progresses around Iceland. A seasonal accounting of the water masses within the currents indicates that only in springtime is the NIIC dominated by AW inflow north of Denmark Strait. Overall, there is considerably more seasonal and along-stream variability in the properties of the flow prior to the merging of the NIIC and EIC. Over the 25-year time period, the NIIC became warmer, saltier, and increased in volume transport. publishedVersion |
format | Article in Journal/Newspaper |
genre | Denmark Strait Iceland Nordic Seas North Icelandic Irminger Current NIIC |
genre_facet | Denmark Strait Iceland Nordic Seas North Icelandic Irminger Current NIIC |
id | ftunivbergen:oai:bora.uib.no:11250/2766171 |
institution | Open Polar |
language | English |
op_collection_id | ftunivbergen |
op_doi | https://doi.org/10.1029/2020JC016283 |
op_relation | Trond Mohn stiftelse: BFS2016REK01 urn:issn:2169-9275 https://hdl.handle.net/11250/2766171 https://doi.org/10.1029/2020JC016283 cristin:1847995 Journal of Geophysical Research (JGR): Oceans. 125(9), e2020JC016283 |
op_rights | Copyright 2020. American Geophysical Union. All Rights Reserved. |
op_source | e2020JC016283 Journal of Geophysical Research (JGR): Oceans 125 9 |
publishDate | 2020 |
publisher | AGU |
record_format | openpolar |
spelling | ftunivbergen:oai:bora.uib.no:11250/2766171 2025-01-16T21:37:27+00:00 Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland Casanova-Masjoan, M Perez-Hernandez, MD Pickart, Robert S. Valdimarsson, Héðinn Ólafsdóttir, SR Macrander, Andreas Grisolía-Santos, D Torres, Daniel J. Jónsson, Steingrímur Våge, Kjetil Lin, Peigen Hernández-Guerra, A 2020 application/pdf https://hdl.handle.net/11250/2766171 https://doi.org/10.1029/2020JC016283 eng eng AGU Trond Mohn stiftelse: BFS2016REK01 urn:issn:2169-9275 https://hdl.handle.net/11250/2766171 https://doi.org/10.1029/2020JC016283 cristin:1847995 Journal of Geophysical Research (JGR): Oceans. 125(9), e2020JC016283 Copyright 2020. American Geophysical Union. All Rights Reserved. e2020JC016283 Journal of Geophysical Research (JGR): Oceans 125 9 VDP::Oseanografi: 452 VDP::Oceanography: 452 Journal article Peer reviewed 2020 ftunivbergen https://doi.org/10.1029/2020JC016283 2023-03-14T17:40:44Z Data from repeat hydrographic surveys over the 25-year period 1993 to 2017, together with satellite altimetry data, are used to quantify the temporal and spatial variability of the North Icelandic Irminger Current (NIIC), East Icelandic Current (EIC), and the water masses they advect around northern Iceland. We focus on the warm, salty Atlantic Water (AW) flowing northward through Denmark Strait and the cooler, fresher, denser Atlantic-origin Overflow Water (AtOW) which has circulated cyclonically around the rim of the Nordic Seas before being advected to the Iceland slope via the EIC. The absolute geostrophic velocities reveal that approximately half of the NIIC recirculates just north of Denmark Strait, while the remaining half merges with the EIC to form a single current that extends to the northeast of Iceland, with no further loss in transport of either component. The AW percentage decreases by 75% over this distance, while the AtOW percentage is higher than that of the AW in the merged current. The NIIC and merged NIIC-EIC are found to be baroclinically unstable, which causes the flow to become increasingly barotropic as it progresses around Iceland. A seasonal accounting of the water masses within the currents indicates that only in springtime is the NIIC dominated by AW inflow north of Denmark Strait. Overall, there is considerably more seasonal and along-stream variability in the properties of the flow prior to the merging of the NIIC and EIC. Over the 25-year time period, the NIIC became warmer, saltier, and increased in volume transport. publishedVersion Article in Journal/Newspaper Denmark Strait Iceland Nordic Seas North Icelandic Irminger Current NIIC University of Bergen: Bergen Open Research Archive (BORA-UiB) Journal of Geophysical Research: Oceans 125 9 |
spellingShingle | VDP::Oseanografi: 452 VDP::Oceanography: 452 Casanova-Masjoan, M Perez-Hernandez, MD Pickart, Robert S. Valdimarsson, Héðinn Ólafsdóttir, SR Macrander, Andreas Grisolía-Santos, D Torres, Daniel J. Jónsson, Steingrímur Våge, Kjetil Lin, Peigen Hernández-Guerra, A Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title | Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title_full | Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title_fullStr | Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title_full_unstemmed | Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title_short | Along‐stream, seasonal, and interannual variability of the North Icelandic Irminger Current and East Icelandic Current around Iceland |
title_sort | along‐stream, seasonal, and interannual variability of the north icelandic irminger current and east icelandic current around iceland |
topic | VDP::Oseanografi: 452 VDP::Oceanography: 452 |
topic_facet | VDP::Oseanografi: 452 VDP::Oceanography: 452 |
url | https://hdl.handle.net/11250/2766171 https://doi.org/10.1029/2020JC016283 |