DocumentCode :
3529763
Title :
C-band D-InSAR and field data for calibrating a groundwater flow and land subsidence model
Author :
Calderhead, Angus I. ; Martel, Richard ; Rivera, Alfonso ; Garfias, Jaime ; Alasset, Pierre-Jean
Volume :
4
fYear :
2009
fDate :
12-17 July 2009
Abstract :
Differential Synthetic Aperture Radar Interferometry (D-InSAR) is a powerful technique used for detecting and measuring surface deformation with sub-centimetre accuracy. Using C-band data from three different satellites, the D-InSAR technique is used to calibrate a coupled groundwater flow and land subsidence numerical model. Additionally, D-InSAR results from different sensors are compared and contrasted. When comparing D-InSAR results with extensometers and water levels, a direct correlation is nociced. For all D-InSAR image pairs, large baselines, atmospheric effects, temporal decorrelation, and vegetative cover were limiting factors in obtaining a maximum number of usable interferograms. The total maximum subsidence for a point location in the valley between November 2003 and May 2008 is approximately 40 cm reaching a maximum total subsidence of over 2.0 metres since 1962. When contrasting the ENVISAT ASAR and RADARSAT-1 data, subsidence rates were similar yet the distribution had significant differences. Additionally, ENVISAT´s shorter baselines led to more accurate results.
Keywords :
deformation; geomorphology; groundwater; hydrological techniques; radar interferometry; remote sensing by radar; synthetic aperture radar; AD 203 11 to 2008 05; C-band D-InSAR; D-InSAR image pairs; ENVISAT ASAR data; RADARSAT-1 data; atmospheric effects; coupled groundwater flow-land subsidence model; differential SAR interferometry; field data; groundwater flow model calibration; land subsidence model calibration; surface deformation; temporal decorrelation; vegetative cover; Compaction; Geologic measurements; Geology; Numerical models; Phase measurement; Pixel; Radar detection; Satellites; Surface topography; Synthetic aperture radar interferometry; D-InSAR; ENVISAT ASAR; Mexico; Toluca; groundwater RADARSAT-1; land subsidence;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Geoscience and Remote Sensing Symposium,2009 IEEE International,IGARSS 2009
Conference_Location :
Cape Town
Print_ISBN :
978-1-4244-3394-0
Electronic_ISBN :
978-1-4244-3395-7
Type :
conf
DOI :
10.1109/IGARSS.2009.5417352
Filename :
5417352
Link To Document :
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