Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid

The mean dynamic topography of the surface of the North Atlantic is estimated using an inverse model of the ocean circulation constrained by hydrographic and altimetric observations. In the North Atlantic, altimetric observations have no significant impact on the topography estimate because of t...

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Main Authors: P. LeGrand, H. Mercier, T. Reynaud
Format: Article
Language:English
Published: Copernicus Publications 1998-05-01
Series:Annales Geophysicae
Online Access:https://www.ann-geophys.net/16/638/1998/angeo-16-638-1998.pdf
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spelling doaj-e9859698db39491a928c31196e8534582020-11-24T20:51:58ZengCopernicus PublicationsAnnales Geophysicae0992-76891432-05761998-05-011663865010.1007/s00585-998-0638-0Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoidP. LeGrand0H. Mercier1T. Reynaud2T. Reynaud3Laboratoire de Physique des Oc&#x00E9;ans, Unit&#x00E9; mixte CNRS-IFREMER-Universit&#x00E9; de Bretagne Occidentale, IFREMER centre de Brest, B.P. 70, F-29280 Plouzan&#x00E9; , FranceLaboratoire de Physique des Oc&#x00E9;ans, Unit&#x00E9; mixte CNRS-IFREMER-Universit&#x00E9; de Bretagne Occidentale, IFREMER centre de Brest, B.P. 70, F-29280 Plouzan&#x00E9; , FranceNow at LEG1/MEOM, Institut de M&#x00E9;canique de Grenoble, B.P. 53, F-38041 Grenoble CEDEX, FranceLaboratoire de Physique des Oc&#x00E9;ans, Unit&#x00E9; mixte CNRS-IFREMER-Universit&#x00E9; de Bretagne Occidentale, IFREMER centre de Brest, B.P. 70, F-29280 Plouzan&#x00E9; , FranceThe mean dynamic topography of the surface of the North Atlantic is estimated using an inverse model of the ocean circulation constrained by hydrographic and altimetric observations. In the North Atlantic, altimetric observations have no significant impact on the topography estimate because of the limited precision of available geoid height models. They have a significant impact, however, when uncertainties in the density field are increased to simulate interpolation errors in regions where hydrographic data are scarce. This result, which moderates the conclusion drawn by Ganachaud and co-workers of no significant contribution of altimetric observations to the determination of the large-scale steady circulation, reflects the simple idea that altimetric data are most useful near the surface of the ocean and in areas where the hydrography is poorly determined. One application of the present inverse estimate of the mean dynamic topography is to compute a geoid height correction over the North Atlantic which reduces the uncertainty in the geoid height expanded to spherical harmonic 40 down to a level of about 5 cm.<br><br><b>Key words.</b> Oceanography: general (climate and interannual variability) · Oceanography: physical (general circulation; remote sensing)</p>https://www.ann-geophys.net/16/638/1998/angeo-16-638-1998.pdf
collection DOAJ
language English
format Article
sources DOAJ
author P. LeGrand
H. Mercier
T. Reynaud
T. Reynaud
spellingShingle P. LeGrand
H. Mercier
T. Reynaud
T. Reynaud
Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
Annales Geophysicae
author_facet P. LeGrand
H. Mercier
T. Reynaud
T. Reynaud
author_sort P. LeGrand
title Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
title_short Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
title_full Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
title_fullStr Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
title_full_unstemmed Combining T/P altimetric data with hydrographic data to estimate the mean dynamic topography of the North Atlantic and improve the geoid
title_sort combining t/p altimetric data with hydrographic data to estimate the mean dynamic topography of the north atlantic and improve the geoid
publisher Copernicus Publications
series Annales Geophysicae
issn 0992-7689
1432-0576
publishDate 1998-05-01
description The mean dynamic topography of the surface of the North Atlantic is estimated using an inverse model of the ocean circulation constrained by hydrographic and altimetric observations. In the North Atlantic, altimetric observations have no significant impact on the topography estimate because of the limited precision of available geoid height models. They have a significant impact, however, when uncertainties in the density field are increased to simulate interpolation errors in regions where hydrographic data are scarce. This result, which moderates the conclusion drawn by Ganachaud and co-workers of no significant contribution of altimetric observations to the determination of the large-scale steady circulation, reflects the simple idea that altimetric data are most useful near the surface of the ocean and in areas where the hydrography is poorly determined. One application of the present inverse estimate of the mean dynamic topography is to compute a geoid height correction over the North Atlantic which reduces the uncertainty in the geoid height expanded to spherical harmonic 40 down to a level of about 5 cm.<br><br><b>Key words.</b> Oceanography: general (climate and interannual variability) · Oceanography: physical (general circulation; remote sensing)</p>
url https://www.ann-geophys.net/16/638/1998/angeo-16-638-1998.pdf
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