Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex).
ABSTRACT Operational monitoring and forecasting system for global and regional oceans, including the Arctic, combines observations from different satellite remote sensing techniques and in-situ open ocean measurements with ocean circulation models through advanced assimilation techniques. Satellites...
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ftciteseerx:oai:CiteSeerX.psu:10.1.1.1082.2866 2023-05-15T14:38:14+02:00 Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). Hanne Sagen Stein Sandven Agnieszka Beszczynska-Moeller Olaf Boebel Timothy F Duda Freitag Lee Jean Claude Gascard Alexander N Gavrilov Craig M Lee David K Mellinger Peter N Mikhalevsky Sue E Moore Andrey K Morozov Michel Rixen Emmanuel Skarsoulis Kathleen M Stafford Elling Tveit Peter F Worcester ) The Pennsylvania State University CiteSeerX Archives 2010 application/pdf http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1082.2866 http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf en eng http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1082.2866 http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf Metadata may be used without restrictions as long as the oai identifier remains attached to it. http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf text 2010 ftciteseerx 2020-05-03T00:26:35Z ABSTRACT Operational monitoring and forecasting system for global and regional oceans, including the Arctic, combines observations from different satellite remote sensing techniques and in-situ open ocean measurements with ocean circulation models through advanced assimilation techniques. Satellites can sufficiently monitor changes in surface properties of the polar oceans, while the interior of the ocean is poorly observed since the water mass is opaque to electromagnetic waves and Argo floats cannot yet be used in the Arctic. Correspondingly, the internal of the Arctic Ocean is not monitored on a systematic basis, and this represents a significant gap in the Global Ocean Observing System. It is recommended to design and implement a cost-efficient, multi-purpose acoustic infrastructure for ocean acoustic tomography, navigation/positioning of gliders and floats under ice, and monitoring of ambient noise and marine mammals. Text Arctic Arctic Ocean Unknown Arctic Arctic Ocean |
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Open Polar |
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English |
description |
ABSTRACT Operational monitoring and forecasting system for global and regional oceans, including the Arctic, combines observations from different satellite remote sensing techniques and in-situ open ocean measurements with ocean circulation models through advanced assimilation techniques. Satellites can sufficiently monitor changes in surface properties of the polar oceans, while the interior of the ocean is poorly observed since the water mass is opaque to electromagnetic waves and Argo floats cannot yet be used in the Arctic. Correspondingly, the internal of the Arctic Ocean is not monitored on a systematic basis, and this represents a significant gap in the Global Ocean Observing System. It is recommended to design and implement a cost-efficient, multi-purpose acoustic infrastructure for ocean acoustic tomography, navigation/positioning of gliders and floats under ice, and monitoring of ambient noise and marine mammals. |
author2 |
The Pennsylvania State University CiteSeerX Archives |
format |
Text |
author |
Hanne Sagen Stein Sandven Agnieszka Beszczynska-Moeller Olaf Boebel Timothy F Duda Freitag Lee Jean Claude Gascard Alexander N Gavrilov Craig M Lee David K Mellinger Peter N Mikhalevsky Sue E Moore Andrey K Morozov Michel Rixen Emmanuel Skarsoulis Kathleen M Stafford Elling Tveit Peter F Worcester ) |
spellingShingle |
Hanne Sagen Stein Sandven Agnieszka Beszczynska-Moeller Olaf Boebel Timothy F Duda Freitag Lee Jean Claude Gascard Alexander N Gavrilov Craig M Lee David K Mellinger Peter N Mikhalevsky Sue E Moore Andrey K Morozov Michel Rixen Emmanuel Skarsoulis Kathleen M Stafford Elling Tveit Peter F Worcester ) Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
author_facet |
Hanne Sagen Stein Sandven Agnieszka Beszczynska-Moeller Olaf Boebel Timothy F Duda Freitag Lee Jean Claude Gascard Alexander N Gavrilov Craig M Lee David K Mellinger Peter N Mikhalevsky Sue E Moore Andrey K Morozov Michel Rixen Emmanuel Skarsoulis Kathleen M Stafford Elling Tveit Peter F Worcester ) |
author_sort |
Hanne Sagen |
title |
Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
title_short |
Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
title_full |
Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
title_fullStr |
Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
title_full_unstemmed |
Acoustic technologies for observing the interior of the Arctic Ocean" in these proceedings (Annex). |
title_sort |
acoustic technologies for observing the interior of the arctic ocean" in these proceedings (annex). |
publishDate |
2010 |
url |
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1082.2866 http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf |
geographic |
Arctic Arctic Ocean |
geographic_facet |
Arctic Arctic Ocean |
genre |
Arctic Arctic Ocean |
genre_facet |
Arctic Arctic Ocean |
op_source |
http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf |
op_relation |
http://citeseerx.ist.psu.edu/viewdoc/summary?doi=10.1.1.1082.2866 http://www.oceanobs09.net/proceedings/ac/FCXNL-09A02-1766563-1-ac5b19.pdf |
op_rights |
Metadata may be used without restrictions as long as the oai identifier remains attached to it. |
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1766310345355296768 |