Médéric Gravelle
University of La Rochelle
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Featured researches published by Médéric Gravelle.
Geophysical Research Letters | 2014
Guy Wöppelmann; Marta Marcos; Alvaro Santamaría-Gómez; Belén Martín-Míguez; Marie-Noëlle Bouin; Médéric Gravelle
Tide gauge records are the primary source of sea level information over multidecadal to century timescales. A critical issue in using this type of data to determine global climate-related contributions to sea level change concerns the vertical motion of the land upon which the gauges are grounded. Here we use observations from the Global Positioning System for the correction of this vertical land motion. As a result, the spatial coherence in the rates of sea level change during the twentieth century is highlighted at the local and the regional scales, ultimately revealing a clearly distinct behavior between the Northern and the Southern Hemispheres with values of 2.0 mm/yr and 1.1 mm/yr, respectively. Our findings challenge the widely accepted value of global sea level rise for the twentieth century.
Journal of Geodesy | 2015
Philip L. Woodworth; Médéric Gravelle; Marta Marcos; Guy Wöppelmann; Chris W. Hughes
We review the measurement of the mean dynamic topography (MDT) of the Mediterranean using ellipsoidal heights of sea level at discrete tide gauge locations, and across the entire basin using satellite altimetry, subtracting estimates of the geoid obtained from recent models. This ‘geodetic approach’ to the determination of the MDT can be compared to the independent ‘ocean approach’ that involves the use of in situ oceanographic measurements and ocean modelling. We demonstrate that with modern geoid and ocean models there is an encouraging level of consistency between the two sets of MDTs. In addition, we show how important geodetic MDT information can be in judging between existing global ocean circulation models, and in providing insight for the development of new ones. The review makes clear the major limitations in Mediterranean data sets that prevent a more complete validation, including the need for improved geoid models of high spatial resolution and accuracy. Suggestions are made on how a greater amount of reliable geo-located tide gauge information can be obtained in the future.
Environmental Research Letters | 2015
Gonéri Le Cozannet; Daniel Raucoules; Guy Wöppelmann; Manuel Garcin; Sylvestre Da Sylva; Benoit Meyssignac; Médéric Gravelle; Franck Lavigne
With growing concerns regarding future impacts of sea-level in major coastal cities, the most accurate information is required regarding local sea-level changes with respect to the coast. Besides global and regional sea-level changes, local coastal vertical ground motions can substantially contribute to local changes in sea-level. In some cases, such ground motions can also limit the usefulness of tide-gauge records, which are a unique source of information to evaluate global sea-level changes before the altimetry era. Using satellite synthetic aperture radar interferometry, this study aims at characterizing vertical coastal ground motion in Dakar (Senegal), where a unique century-long record in Africa has been rediscovered. Given the limited number of available images, we use a stacking procedure to compute ground motion velocities in the line of sight over 1992–2010. Despite a complex geology and a rapid population growth and development, we show that the city as a whole is unaffected by differential ground motions larger than 1 mm year −1. Only the northern part of the harbor displays subsidence patterns after 2000, probably as a consequence of land reclamation works. However, these ground motions do not affect the historical tide gauge. Our results highlight the value of the historical sea-level records of Dakar, which cover a 100 year time-span in a tropical oceanic region of Africa, where little data are available for past sea-level reconstructions.
Eos | 2017
Philip L. Woodworth; Guy Wöppelmann; Marta Marcos; Médéric Gravelle; Richard M. Bingley
Accurate measurements of changes in sea and land levels with location and time require making precise, repeated geodetic ties between tide gauges and satellite positioning system equipment.
Global and Planetary Change | 2012
Alvaro Santamaría-Gómez; Médéric Gravelle; Xavier Collilieux; M. Guichard; B. Martin Miguez; P. Tiphaneau; Guy Wöppelmann
Natural Hazards and Earth System Sciences | 2013
Jean-François Breilh; Eric Chaumillon; Xavier Bertin; Médéric Gravelle
Remote Sensing of Environment | 2013
Daniel Raucoules; Gonéri Le Cozannet; Guy Wöppelmann; Marcello de Michele; Médéric Gravelle; Arturo Daag; Marta Marcos
Journal of Geodesy | 2014
Alvaro Santamaría-Gómez; Médéric Gravelle; Guy Wöppelmann
Journal of Geodesy | 2015
Alvaro Santamaría-Gómez; Cs Watson; Médéric Gravelle; Matt A. King; Guy Wöppelmann
Journal of Geodesy | 2014
Guy Wöppelmann; Marta Marcos; A. Coulomb; B. Martin Miguez; P. Bonnetain; C. Boucher; Médéric Gravelle; Bernard Simon; P. Tiphaneau