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From 1975 until the mid-1990s, Cazenave researched temporal and spatial variations of gravity. She used satellite altimetry data from SEASAT, ERS-1, and TOPEX/Poseidon to devise gravity models of deep ocean geodynamic processes. The models were used to investigate marine tectonic features such as geoid height variations across deep ocean trenches and fracture zones, lithospheric cooling and subsidence, and the isostatic compensation of seamount chains.
Cazenave turned her focus to space oceanography in the 1990s. Using data sets from the satellite altimetry missions TOPEX/Poseidon, Jason-1, and the Ocean Surface Topography Mission of Jason-2, she has addressed the problem of global sea level rise. She was among the first scientists to use the satellite altimetry data to extrapolate a rate of sea level rise of approximately three mm/year. She addressed the problem of balancing the global sea level budget by incorporating time-dependent gravity field data from the GRACE satellite system into her analyses. She has also been involved in studying terrestrial bodies of water from space.Cazenave is interested in "measuring temporal changes of the Earth gravity field using space gravimetry and in applications to ice sheet mass balance and change in total land water storage."
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Marie Bouih,Anne Barnoud,Robin Fraudeau, Gilles Larnicol,Anny Cazenave,Benoit Meyssignac,Alejandro Blazquez,Martin Horwath, Thorben Döhne,Jonathan Bamber, Anrijs Abele,Stéphanie Leroux,
crossref(2024)
Surveys in Geophysicsno. 5 (2023): 1239-1242
HYDROLOGY AND EARTH SYSTEM SCIENCESno. 20 (2023): 3743-3768
Nature Climate Changeno. 8 (2023): 796-803
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