Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013
The overall goal of this study is to obtain a quantitative description of the water mass composition, kinematics, and dynamics of the Atlantic water boundary current in the eastern Arctic Ocean over an annual cycle, in order to elucidate the role of the current in regulating the Arctic system. The p...
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Arctic Data Center
2018
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dataone:doi:10.18739/A2DV9X 2024-11-03T19:44:55+00:00 Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 Leah McRaven Eastern Arctic Ocean ENVELOPE(30.27498,30.27498,81.80053,81.80053) BEGINDATE: 2012-09-21T00:00:00Z ENDDATE: 2013-09-19T00:00:00Z 2018-01-02T00:00:00Z https://doi.org/10.18739/A2DV9X unknown Arctic Data Center Physical Oceanography Mooring Observations Atlantic Water Inflow Experiment ATWAIN A-TWAIN Dataset 2018 dataone:urn:node:ARCTIC https://doi.org/10.18739/A2DV9X 2024-11-03T19:10:43Z The overall goal of this study is to obtain a quantitative description of the water mass composition, kinematics, and dynamics of the Atlantic water boundary current in the eastern Arctic Ocean over an annual cycle, in order to elucidate the role of the current in regulating the Arctic system. The project is part of a larger cooperative program entitled the Atlantic Water Inflow Experiment (ATWAIN), which is an international collaboration between six institutions: The Woods Hole Oceanographic Institution (WHOI), USA; the Institute for Marine Research in Bergen, Norway (IMR); the Norwegian Polar Institute (NPI); the University of Svalbard (UNIS); the University of Tromsø (UT); and the Institute of Oceanology Polish Academy of Sciences (IOPAS). The main goal of ATWAIN is to better understand how the Atlantic water spreads into the Arctic Ocean, including the manner in which it interacts with the pack-ice and how it is transformed within the Eurasian Basin. As part of our study, six moorings were deployed across the Atlantic water boundary current near 30E for a one-year period, from September 2012 to September 2013. WHOI provided the four offshore moorings in the array. Dataset Arctic Arctic Ocean Norwegian Polar Institute Svalbard UNIS University of Tromsø Arctic Data Center (via DataONE) Arctic Arctic Ocean Svalbard Norway Tromsø Bergen ENVELOPE(30.27498,30.27498,81.80053,81.80053) |
institution |
Open Polar |
collection |
Arctic Data Center (via DataONE) |
op_collection_id |
dataone:urn:node:ARCTIC |
language |
unknown |
topic |
Physical Oceanography Mooring Observations Atlantic Water Inflow Experiment ATWAIN A-TWAIN |
spellingShingle |
Physical Oceanography Mooring Observations Atlantic Water Inflow Experiment ATWAIN A-TWAIN Leah McRaven Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
topic_facet |
Physical Oceanography Mooring Observations Atlantic Water Inflow Experiment ATWAIN A-TWAIN |
description |
The overall goal of this study is to obtain a quantitative description of the water mass composition, kinematics, and dynamics of the Atlantic water boundary current in the eastern Arctic Ocean over an annual cycle, in order to elucidate the role of the current in regulating the Arctic system. The project is part of a larger cooperative program entitled the Atlantic Water Inflow Experiment (ATWAIN), which is an international collaboration between six institutions: The Woods Hole Oceanographic Institution (WHOI), USA; the Institute for Marine Research in Bergen, Norway (IMR); the Norwegian Polar Institute (NPI); the University of Svalbard (UNIS); the University of Tromsø (UT); and the Institute of Oceanology Polish Academy of Sciences (IOPAS). The main goal of ATWAIN is to better understand how the Atlantic water spreads into the Arctic Ocean, including the manner in which it interacts with the pack-ice and how it is transformed within the Eurasian Basin. As part of our study, six moorings were deployed across the Atlantic water boundary current near 30E for a one-year period, from September 2012 to September 2013. WHOI provided the four offshore moorings in the array. |
format |
Dataset |
author |
Leah McRaven |
author_facet |
Leah McRaven |
author_sort |
Leah McRaven |
title |
Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
title_short |
Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
title_full |
Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
title_fullStr |
Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
title_full_unstemmed |
Mooring Observations from the Atlantic Water Inflow Experiment (ATWAIN) for mooring EA3 at 81.80053°N and 30.27498°E from September 21, 2012 through September 19, 2013 |
title_sort |
mooring observations from the atlantic water inflow experiment (atwain) for mooring ea3 at 81.80053°n and 30.27498°e from september 21, 2012 through september 19, 2013 |
publisher |
Arctic Data Center |
publishDate |
2018 |
url |
https://doi.org/10.18739/A2DV9X |
op_coverage |
Eastern Arctic Ocean ENVELOPE(30.27498,30.27498,81.80053,81.80053) BEGINDATE: 2012-09-21T00:00:00Z ENDDATE: 2013-09-19T00:00:00Z |
long_lat |
ENVELOPE(30.27498,30.27498,81.80053,81.80053) |
geographic |
Arctic Arctic Ocean Svalbard Norway Tromsø Bergen |
geographic_facet |
Arctic Arctic Ocean Svalbard Norway Tromsø Bergen |
genre |
Arctic Arctic Ocean Norwegian Polar Institute Svalbard UNIS University of Tromsø |
genre_facet |
Arctic Arctic Ocean Norwegian Polar Institute Svalbard UNIS University of Tromsø |
op_doi |
https://doi.org/10.18739/A2DV9X |
_version_ |
1814732331106172928 |