• DocumentCode
    1302934
  • Title

    Low-grazing scattering from breaking water waves using an impedance boundary MM/GTD approach

  • Author

    West, James C. ; Sturm, J. Michael ; Ja, Shiou-Jhy

  • Author_Institution
    Sch. of Electr. & Comput. Eng., Oklahoma State Univ., Stillwater, OK, USA
  • Volume
    46
  • Issue
    1
  • fYear
    1998
  • fDate
    1/1/1998 12:00:00 AM
  • Firstpage
    93
  • Lastpage
    100
  • Abstract
    The radar backscattering from water waves of various degrees of breaking Is numerically examined. A hybrid moment method geometrical theory of diffraction (MM/GTD) technique previously used for small-grazing scattering from perfectly conducting surfaces is reformulated using impedance boundary conditions, allowing the treatment of large (but finite) conductivity scattering media such as sea water. This hybrid MM/GTD approach avoids the artificial edge effects that limit the standard moment method when applied to rough surfaces, allowing the calculation of the scattering at arbitrarily small grazing angles. Sample surfaces are obtained through the edge-detection of video stills of breaking waves generated in a wave tank. The numerical calculations show that the strength of the backscatter is closely associated with the size of the plume on the breaking wave. Strong interference appears in the both horizontal (HH) and vertical (VV) backscatter when the surfaces are treated as perfectly conducting. The VV interference is dramatically reduced when a sea water surface is used, but the HH interference is unaffected. The interference leads to HH/VV ratios of up to 10 dB. The behavior of the scattering is consistent with the multipath theory of sea-spike scattering
  • Keywords
    backscatter; electromagnetic wave scattering; geometrical theory of diffraction; method of moments; ocean waves; oceanographic techniques; radar cross-sections; radar interference; remote sensing by radar; HH interference; VV interference; breaking water waves; edge-detection; horizontal backscatter; hybrid moment method geometrical theory of diffraction technique; impedance boundary MM/GTD approach; impedance boundary conditions; large conductivity scattering media; low-grazing scattering; multipath theory; perfectly conducting; plume; radar backscattering; sea water; sea-spike scattering; vertical backscatter; video stills; Backscatter; Interference; Moment methods; Physical theory of diffraction; Radar scattering; Rough surfaces; Sea surface; Surface impedance; Surface roughness; Surface treatment;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/8.655455
  • Filename
    655455