• DocumentCode
    3208738
  • Title

    A Long-Term Real Time Sea Bed Morphology Evolution System in the South Atlantic Bight

  • Author

    Voulgaris, G. ; Morin, J.P.

  • Author_Institution
    Univ. of South Carolina, Columbia
  • fYear
    2008
  • fDate
    17-19 March 2008
  • Firstpage
    71
  • Lastpage
    79
  • Abstract
    A long-term real time sea bed morphology monitoring system has been established on the middle continental shelf in the South Atlantic Bight. This constitutes part of the Southeast Coastal Ocean Observing System (SEACOOS) and now supports a project that focuses on studying material exchange processes in permeable sediments in response to large scale atmospheric and oceanic forcing. In particular the system supports studies of advective-pore water exchanges that depend on the size and geometry of the wave-induced ripples and the strength of the overlying flows. The seabed morphology system is composed of an Imagenex Model 881 tilted-head digital rotating imaging system (2.25 MHz) connected through 1.5 km of cable to a power and controller unit housed on the R2 Naval platform utilized by the South Atlantic Bight Synoptic Offshore Observational Network (SABSOON). The system collects acoustic images of the seabed along 6 meter long radials with resolution of 0.3 degrees. Data are acquired hourly, transmitted via microwave antenna to shore and reach the laboratory via T1 land line. Raw images are rectified and processed using a 2-dimensional fast Fourier transform algorithm providing wavelength and ripple orientation values. Post-data collection image processing allows evidence of bioturbation to be identified as well. The long-term data base (since April 2007) is used for evaluation of time-dependent ripple evolution models. System design, data analysis methods and example images are presented. The long-term data are used to evaluate a recently introduce time-depended model for coarse sand ripple evolution.
  • Keywords
    image processing; ocean waves; oceanographic regions; seafloor phenomena; sediments; underwater sound; 2D Fast Fourier transform algorithm; Imagenex Model 881 tilted-head digital rotating imaging system; R2 Naval platform; SABSOON; SEACOOS; South Atlantic Bight; South Atlantic Bight Synoptic Offshore Observational Network; Southeast Coastal Ocean Observing System; T1 land line; acoustic images; advective-pore water exchanges; atmospheric forcing; coarse sand ripple evolution; continental shelf; controller unit; data analysis methods; frequency 2.25 MHz; microwave antenna; oceanic forcing; overlying flows strength; permeable sediments; post-data collection; raw images processing; raw images rectification; ripple orientation; sea bed morphology monitoring system; wave-induced ripple geometry; wave-induced ripple size; Atmospheric modeling; Atmospheric waves; Geometry; Large-scale systems; Monitoring; Morphology; Oceans; Real time systems; Sea measurements; Sediments;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Current Measurement Technology, 2008. CMTC 2008. IEEE/OES 9th Working Conference on
  • Conference_Location
    Charlston, SC
  • Print_ISBN
    978-1-4244-1485-7
  • Electronic_ISBN
    978-1-4244-1486-4
  • Type

    conf

  • DOI
    10.1109/CCM.2008.4480847
  • Filename
    4480847