A new ocean mean dynamic topography model, derived from a combination of gravity, altimetry and drifter velocity data

Author:

Knudsen PerORCID,Andersen Ole,Maximenko NikolaiORCID

Funder

European Space Agency through the Optimal Geoid for Modelling Ocean Circulation

National Aeronautics and Space Administration NASA

Publisher

Elsevier BV

Subject

Space and Planetary Science,Aerospace Engineering,General Earth and Planetary Sciences,Atmospheric Science,Geophysics,Astronomy and Astrophysics

Reference21 articles.

1. Andersen, O.B., Knudsen, P., Kenyon, S., Factor, J.K., Holmes, S., 2017. Global gravity field from recent satellites (DTU15) – arctic improvements. First Break), vol: 35, issue: 12, pages: 37–40, (ISSN: 0263-5046). http://dx.doi.org/10.3997/1365-2397.2017022.

2. The DTU13 MSS (Mean Sea Surface) and MDT (Mean Dynamic Topography) from 20 years of satellite altimetry;Andersen;Int. Assoc. Geodesy Symposia. Springer,2015

3. Improving the coastal mean dynamic topography by geodetic combination of tide gauge and satellite altimetry;Andersen;Mar. Geod.,2018

4. Benveniste, J., Knudsen, P., and the GUTS Team, 2007. The GOCE User Toolbox. In: Proceedings of the 3rd International GOCE User Workshop, 6-8 November 2006, Frascati, Italy (ESA SP -627), pages: 265–268/Edited by Karen Fletcher. – Noordwijk: European Space Agency.

5. An initial estimate of the North Atlantic steady-state geostrophic circulation from GOCE;Bingham;Geophys. Res. Lett.,2010

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