HR: 1340h
AN: OS23B-1312 [Abstracts]
TI: A Detailed Near-bottom Survey of Large Gas Blowout Structures Along the US Atlantic Shelf Break Using
the Autonomous Underwater Vehicle (AUV) SeaBED
AU: * Newman, K R
EM: knewman@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory of Columbia University, 61 Route 9W, Palisades, NY 10964
AU: Cormier, M
EM: cormier@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory of Columbia University, 61 Route 9W, Palisades, NY 10964
AU: Weissel, J K
EM: jeffw@ldeo.columbia.edu
AF: Lamont-Doherty Earth Observatory of Columbia University, 61 Route 9W, Palisades, NY 10964
AU: Driscoll, N W
AF: Scripps Institution of Oceanography, UCSD, 9500 Gilman Drive, La Jolla, CA 92093
AU: Kastner, M
EM: mkastner@ucsd.edu
AF: Scripps Institution of Oceanography, UCSD, 9500 Gilman Drive, La Jolla, CA 92093
AU: Singh, H
EM: hsingh@whoi.edu
AF: Woods Hole Oceanographic Institution, MS 7, Woods Hole, MA 02543
AU: Camilli, R
EM: rcamilli@whoi.edu
AF: Woods Hole Oceanographic Institution, MS 7, Woods Hole, MA 02543
AU: Eustice, R
EM: ryan@whoi.edu
AF: Woods Hole Oceanographic Institution, MS 7, Woods Hole, MA 02543
AU: McPhee, N
EM: nmcphee@whoi.edu
AF: Woods Hole Oceanographic Institution, MS 7, Woods Hole, MA 02543
AU: Ahern, J C
EM: jcahern@duke.edu
AF: Duke University Marine Laboratory, 135 Duke Marine Lab Road, Beaufort, NC 28516
AU: Hill, J C
EM: jchill@ucsd.edu
AF: Scripps Institution of Oceanography, UCSD, 9500 Gilman Drive, La Jolla, CA 92093
AU: Robertson, G
EM: garobertson@ucsd.edu
AF: Scripps Institution of Oceanography, UCSD, 9500 Gilman Drive, La Jolla, CA 92093
AU: Solomon, E
EM: esolomon@ucsd.edu
AF: Scripps Institution of Oceanography, UCSD, 9500 Gilman Drive, La Jolla, CA 92093
AU: Tomanka, K
EM: ktomanka@gladstone.uoregon.edu
AF: Seafloor Systems, Inc., 2038 NW Aloclek Drive
Suite 218, Hillsboro, OR 97124
AB:
The autonomous underwater vehicle (AUV) SeaBED was deployed along the edge of the Virginia/North Carolina continental shelf
in July 2004 to investigate a series of crack-like features. Prior investigations indicated these are large (up to 4km long,
~50m deep) gas blowout structures. In addition, the features were carefully mapped with a multibeam bathymetric sonar and
sampled for geochemical and sedimentological analysis. The AUV completed 16 successful dives and collected microbathymetric,
temperature, salinity, and methane concentration data, along with approximately 36,000 photographs while maintaining an
altitude of approximately 3m above the seafloor. The AUV was deployed without seafloor transponders. Instead, the vehicle's
navigation was based on a doppler inertial system. The accuracy of the navigation was tested by comparing seafloor depth,
measured by the vehicle, with the shipboard swath bathymetry, and by computing the differences in seafloor depth where the
vehicle tracks cross. The mean crossover error is 2.18m, showing the vehicle's navigation is actually quite accurate.
Photos taken near the crossovers will be compared to determine the exact location of the crossovers. Dissolved methane
concentration data, collected using a METS sensor, show elevated concentrations throughout most of the survey area, with the
largest anomalies being very localized (50-100m across). Photos, color corrected for attenuation in average seawater, are
red-shifted wherever high dissolved methane concentrations are detected, providing additional evidence for seepage in those
areas. No other visual evidence of methane venting, such as authigenic carbonates, chemosynthetic communities or gas
bubbles, is recognized in the photos, although shells, fish and invertebrates are commonly seen. Methane concentration data
at most track crossovers are inconsistent, indicating the magnitude of the anomaly may be affected by time dependent factors
such as tides, currents or instrument drift. We favor the explanation of methane flux being modulated by tidal variations,
in keeping with observations made at cold seeps on the western coast of North America. We will test this hypothesis by
minimizing the crossover errors as a function of tidal stage.
DE: 4820 Gases
DE: 4825 Geochemistry
DE: 3045 Seafloor morphology and bottom photography
DE: 3094 Instruments and techniques
DE: 3099 General or miscellaneous
SC: Ocean Sciences [OS]
MN: 2004 AGU Fall Meeting