• DocumentCode
    1499629
  • Title

    Subsurface structures detection by combining L-band polarimetric SAR and GPR data: example of the Pyla Dune (France)

  • Author

    Grandjean, Gilles ; Paillou, Philippe ; Dubois-Fernandez, Pascale ; August-Bernex, Thomas ; Baghdadi, Nicolas N. ; Achache, José

  • Author_Institution
    BRGM, Orleans, France
  • Volume
    39
  • Issue
    6
  • fYear
    2001
  • fDate
    6/1/2001 12:00:00 AM
  • Firstpage
    1245
  • Lastpage
    1258
  • Abstract
    The authors investigate the penetration capabilities of microwaves, particularly at L-band, for the mapping of subsurface heterogeneities such as lithology variations, moisture or sedimentary structures. The experiment site, the Pyla Dune, is a bare sandy area allowing high signal penetration and presenting large subsurface structures (paleosoils) at varying depths. Several radar data sets over this area are available. A polarimetric analysis of airborne synthetic aperture radar (SAR) data as web as the ground penetrating radar (GPR) sounding experiment show that subsurface scattering occurs at several places. The SAR penetration depth is estimated by inverting a scattering model for which the subsurface structure geometric and dielectric properties are determined by the GPR data analysis. These results suggest that airborne radar systems in a lower frequency range (P-band) should be able to detect subsurface moisture down to several meters, leading to innovative Earth observation systems for hydrogeology in arid regions
  • Keywords
    airborne radar; geology; geophysical techniques; groundwater; hydrological techniques; moisture measurement; radar polarimetry; remote sensing by radar; soil; synthetic aperture radar; terrain mapping; terrestrial electricity; France; GPR; L-band; P-band; Pyla Dune; SAR; UHF; airborne radar; arid region; buried object detection; geoelectric method; geology; geophysical measurement technique; ground penetrating radar; groundwater; hydrogeology; hydrology; land surface; lithology; microwave; moisture; penetration capability; penetration depth; polarimetric SAR; radar polarimetry; radar remote sensing; sand; sandy area; sedimentary structure; soil moisture; subsurface heterogeneities; subsurface scattering; subsurface structure; synthetic aperture radar; terrain mapping; terrestrial electricity; Acoustic scattering; Data analysis; Dielectrics; Ground penetrating radar; L-band; Moisture; Radar polarimetry; Radar scattering; Solid modeling; Synthetic aperture radar;
  • fLanguage
    English
  • Journal_Title
    Geoscience and Remote Sensing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0196-2892
  • Type

    jour

  • DOI
    10.1109/36.927447
  • Filename
    927447