Spatio-temporal evolution of aseismic ground deformation in the Mexicali Valley (Baja California, Mexico) from 1993 to 2010, using differential SAR interferometry
Ground deformation in Mexicali Valley, Baja California, Mexico, the southern part of the Mexicali-Imperial valley, is influenced by active tectonics and human activity, mainly that of geothermal fluid extraction in the Cerro Prieto Geothermal Field. Significant ground deformation, mainly subsiden...
Main Authors: | , |
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Format: | Article |
Language: | English |
Published: |
Copernicus Publications
2015-11-01
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Series: | Proceedings of the International Association of Hydrological Sciences |
Online Access: | https://www.proc-iahs.net/372/335/2015/piahs-372-335-2015.pdf |
Summary: | Ground deformation in Mexicali Valley, Baja California, Mexico, the southern
part of the Mexicali-Imperial valley, is influenced by active tectonics and
human activity, mainly that of geothermal fluid extraction in the Cerro
Prieto Geothermal Field. Significant ground deformation, mainly subsidence
(~ 18 cm yr<sup>−1</sup>), and related ground fissures cause severe damage
to local infrastructure.
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The technique of Differential Synthetic Aperture Radar Interferometry
(DInSAR) has been demonstrated to be a very effective remote sensing tool
for accurately measuring the spatial and temporal evolution of ground
displacements over broad areas. In present study ERS-1/2 SAR and ENVISAT
ASAR images acquired between 1993 and 2010 were used to perform a historical
analysis of aseismic ground deformation in Mexicali Valley, in an attempt to
evaluate its spatio-temporal evolution and improve the understanding of its
dynamic. For this purpose, the conventional 2-pass DInSAR was used to
generate interferograms which were used in stacking procedure to produce
maps of annual aseismic ground deformation rates for different periods.
Differential interferograms that included strong co-seismic deformation
signals were not included in the stacking and analysis.
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The changes in the ground deformation pattern and rate were identified. The
main changes occur between 2000 and 2005 and include increasing deformation
rate in the recharge zone and decreasing deformation rate in the western
part of the CPGF production zone. We suggested that these changes are mainly
caused by production development in the Cerro Prieto Geothermal Field. |
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ISSN: | 2199-8981 2199-899X |