Title :
Observation of the Argentière Glacier Flow Variability from 2009 to 2011 by TerraSAR-X and GPS Displacement Measurements
Author :
Ponton, Fanny ; Trouve, Emmanuel ; Gay, Michel ; Walpersdorf, Andrea ; Fallourd, Renaud ; Nicolas, Jean-Marie ; Vernier, Flavien ; Mugnier, Jean-Louis
Author_Institution :
ISTerre, Univ. Joseph Fourier, St. Martin d´Hères, France
Abstract :
In this paper, 3 years of surface displacement measurements obtained by space-borne synthetic aperture radar (SAR) observations are presented over the Argentière glacier in the Mont-Blanc massif, France. This temperate glacier is instrumented by a network of four Global Positioning System (GPS) stations used as ground truth. Thirty-eight pairs of descending and ascending high-resolution TerraSAR-X (TSX) acquisitions covering the study region are used to derive displacement fields at 11-day intervals in spring and summer 2009 and summer 2011. The combination of ascending and descending pairs acquired over the same period allows 3-D displacement fields to be inverted. Our SAR analysis quantifies displacement rates from 10 cm/day at the altitude of 2600 m to 30 cm/day at the altitude of 1800 m. Time series of SAR displacement results are compared with in situ GPS measurements of a continuous station set up at the altitude of 2441 m. Both data sources present displacement of the same order of magnitude with an average value of 20 cm/day in 3-D and show intra-seasonal variabilities, with fast accelerations over short time intervals.
Keywords :
Global Positioning System; glaciology; remote sensing by radar; synthetic aperture radar; 3-D displacement fields; AD 2009 to 2011; Argentiere glacier flow variability; France; GPS displacement; GPS stations; Global Positioning System; Mont-Blanc massif; SAR analysis; TerraSAR-X acquisitions; TerraSAR-X displacement measurement; space-borne SAR observations; surface displacement measurements; synthetic aperture radar; temperate glacier; Correlation; Displacement measurement; Global Positioning System; Radar tracking; Remote sensing; Surface topography; Synthetic aperture radar; Glacier displacement; Global Positioning System (GPS); TerraSAR-X; synthetic aperture radar (SAR) images time series;
Journal_Title :
Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of
DOI :
10.1109/JSTARS.2014.2349004