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SKIM, a Candidate Satellite Mission Exploring Global Ocean Currents and Waves

Authors :
Fabrice Ardhuin
Peter Brandt
Lucile Gaultier
Craig Donlon
Alessandro Battaglia
François Boy
Tania Casal
Bertrand Chapron
Fabrice Collard
Sophie Cravatte
Jean-Marc Delouis
Erik De Witte
Gerald Dibarboure
Geir Engen
Harald Johnsen
Camille Lique
Paco Lopez-Dekker
Christophe Maes
Adrien Martin
Louis Marié
Dimitris Menemenlis
Frederic Nouguier
Charles Peureux
Pierre Rampal
Gerhard Ressler
Marie-Helene Rio
Bjorn Rommen
Jamie D. Shutler
Martin Suess
Michel Tsamados
Clement Ubelmann
Erik van Sebille
Martin van den Oever
Detlef Stammer
Source :
Frontiers in Marine Science, Vol 6 (2019)
Publication Year :
2019
Publisher :
Frontiers Media S.A., 2019.

Abstract

The Sea surface KInematics Multiscale monitoring (SKIM) satellite mission is designed to explore ocean surface current and waves. This includes tropical currents, notably the poorly known patterns of divergence and their impact on the ocean heat budget, and monitoring of the emerging Arctic up to 82.5°N. SKIM will also make unprecedented direct measurements of strong currents, from boundary currents to the Antarctic circumpolar current, and their interaction with ocean waves with expected impacts on air-sea fluxes and extreme waves. For the first time, SKIM will directly measure the ocean surface current vector from space. The main instrument on SKIM is a Ka-band conically scanning, multi-beam Doppler radar altimeter/wave scatterometer that includes a state-of-the-art nadir beam comparable to the Poseidon-4 instrument on Sentinel 6. The well proven Doppler pulse-pair technique will give a surface drift velocity representative of the top meter of the ocean, after subtracting a large wave-induced contribution. Horizontal velocity components will be obtained with an accuracy better than 7 cm/s for horizontal wavelengths larger than 80 km and time resolutions larger than 15 days, with a mean revisit time of 4 days for of 99% of the global oceans. This will provide unique and innovative measurements that will further our understanding of the transports in the upper ocean layer, permanently distributing heat, carbon, plankton, and plastics. SKIM will also benefit from co-located measurements of water vapor, rain rate, sea ice concentration, and wind vectors provided by the European operational satellite MetOp-SG(B), allowing many joint analyses. SKIM is one of the two candidate satellite missions under development for ESA Earth Explorer 9. The other candidate is the Far infrared Radiation Understanding and Monitoring (FORUM). The final selection will be announced by September 2019, for a launch in the coming decade.

Details

Language :
English
ISSN :
22967745
Volume :
6
Database :
Directory of Open Access Journals
Journal :
Frontiers in Marine Science
Publication Type :
Academic Journal
Accession number :
edsdoj.8f1c75899d64df093af05bd8e07bdd4
Document Type :
article
Full Text :
https://doi.org/10.3389/fmars.2019.00209