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Simultaneous estimation of ocean mesoscale and coherent internal tide sea surface height signatures from the global altimetry record

Clément Ubelmann; Loren Carrere; Chloé Durand; Gérald Dibarboure; Yannice Faugère; Maxime Ballarotta; Frédéric Briol; Florent Lyard
Ocean Science · Vol. 18, Issue 2 · pp. 469-481 · 2022

Abstract

This study proposes an approach to estimate the ocean sea surface height signature of coherent internal tides from a 25-year along-track altimetry record, with a single inversion over time, resolving both internal tide contributions and mesoscale eddy variability. The inversion is performed on a reduced-order basis of topography and practically achieved with a conjugate gradient. The particularity of this approach is to mitigate the potential aliasing effects between mesoscales and internal tide estimation from the uneven altimetry sampling (observing the sum of these components) by accounting for their statistics simultaneously, while other methods generally use a prior mesoscale. The four major tidal components are considered (M2, K1, S2, O1) over the period 1992–2017 on a global configuration. From the solution, we use altimetry data after 2017 for independent validation in order to evaluate the performance of the simultaneous inversion and compare it with an existing model.

Bibliographic Information

JournalOcean Science
PublisherCopernicus Publications / European Geosciences Union
Publication Date2022-04-08
Publication Year2022
Volume18
Issue2
Pages469-481
Document TypeJournal Article
Print ISSN1812-0784
eISSN1812-0792
DOI10.5194/os-18-469-2022
SubjectOceanography; physical oceanography; chemical oceanography; biogeochemistry; ocean modelling

Access Information

NARA Access CoverageOA / free full text
Journal Homepagehttps://www.ocean-science.net/
Publisher PageOpen Publisher Page
This article is openly available from the publisher.