Split-beam echo sounder - navigation points, tracklines, and profile images for Simrad EK60 split-beam echo sounder data collected during USGS field activities 2017-001-FA and 2017-002-FA.

In spring and summer 2017, the U.S. Geological Survey’s Gas Hydrates Project conducted two cruises aboard the research vessel Hugh R. Sharp to explore the geology, chemistry, ecology, physics, and oceanography of sea-floor methane seeps and water column gas plumes on the northern U.S. Atlantic margin between the Baltimore and Keller Canyons. Split-beam and multibeam echo sounders and a chirp subbottom profiler were deployed during the cruises to map water column backscatter, sea-floor bathymetry and backscatter, and subsurface stratigraphy associated with known and undiscovered sea-floor methane seeps. The first cruise, known as the Interagency Mission for Methane Research on Seafloor Seeps and designated as field activity 2017-001-FA, was conducted from May 4 to May 11, 2017, and acquired geophysical data to support remotely operated vehicle exploration of seep sites using the Global Explorer, which is operated by Oceaneering International, Inc. Geophysical operations during cruise 2017-002-FA from August 25 to September 6, 2017, were also focused on mapping water column methane plumes, sea-floor seep sites, and subseafloor strata, but primarily supported conductivity, temperature, and depth instrument deployment, surface-water methane-concentration mapping, and water-sampling operations as part of a collaborative study with the University of Rochester of the effect of methane seepage on ocean water biogeochemistry. The National Oceanic and Atmospheric Administration’s Office of Ocean Exploration and Research partially sponsored cruise 2017-001-FA, and the U.S. Department of Energy partially sponsored both cruises.

Data and Resources

Field Value
accessLevel public
bureauCode {010:12}
catalog_@context https://project-open-data.cio.gov/v1.1/schema/catalog.jsonld
catalog_conformsTo https://project-open-data.cio.gov/v1.1/schema
catalog_describedBy https://project-open-data.cio.gov/v1.1/schema/catalog.json
identifier USGS:5e1e1472e4b0ecf25c610cfb
metadata_type geospatial
modified 20200806
old-spatial -76.307108, 35.284219, -73.821877, 38.818124
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
source_datajson_identifier true
source_hash 2cea856f1bf8360c5a334eecca14f3cd6b84f1e3
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-76.307108, 35.284219], [-76.307108, 38.818124], [ -73.821877, 38.818124], [ -73.821877, 35.284219], [-76.307108, 35.284219]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • accomac-canyon
  • amerigeo
  • amerigeoss
  • atlantic-margin
  • atlantic-ocean
  • baltimore-canyon
  • chincoteague-ridge
  • ckan
  • cmhrp
  • coastal-and-marine-hazards-and-resources-program
  • department-of-energy
  • department-of-the-interior
  • doe
  • doi
  • field-activity-number-2017-001-fa
  • field-activity-number-2017-002-fa
  • geo
  • geoscientificinformation
  • geospatial-datasets
  • geoss
  • hrs1704
  • hrs1713
  • image
  • immerss
  • interagency-mission-for-methane-research-on-seafloor-seeps
  • keller-canyon
  • location
  • marine-geophysics
  • national
  • national-oceanic-and-atmospheric-administration-office-of-ocean-exploration-and-research
  • navigational-data
  • noaa-oer
  • norfolk-canyon
  • north-america
  • oceanography
  • oceans
  • png
  • r-v-hugh-r-sharp
  • scientific-echo-sounder
  • shapefile
  • simrad-ek60-general-purpose-transceiver
  • simrad-es38-10-transducer
  • simrad-raw-format
  • sonar-methods
  • split-beam-echo-sounder
  • split-beam-echo-sounder-navigation
  • split-beam-echo-sounder-profile
  • trackline-navigation
  • u-s-geological-survey
  • united-states
  • united-states-of-america
  • university-of-rochester
  • usgs
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  • washington-canyon
  • whcmsc
  • woods-hole-coastal-and-marine-science-center
isopen False
license_id notspecified
license_title License not specified
maintainer Wayne Baldwin
maintainer_email wbaldwin@usgs.gov
metadata_created 2025-11-20T21:48:19.608475
metadata_modified 2025-11-20T21:48:19.608479
notes In spring and summer 2017, the U.S. Geological Survey’s Gas Hydrates Project conducted two cruises aboard the research vessel Hugh R. Sharp to explore the geology, chemistry, ecology, physics, and oceanography of sea-floor methane seeps and water column gas plumes on the northern U.S. Atlantic margin between the Baltimore and Keller Canyons. Split-beam and multibeam echo sounders and a chirp subbottom profiler were deployed during the cruises to map water column backscatter, sea-floor bathymetry and backscatter, and subsurface stratigraphy associated with known and undiscovered sea-floor methane seeps. The first cruise, known as the Interagency Mission for Methane Research on Seafloor Seeps and designated as field activity 2017-001-FA, was conducted from May 4 to May 11, 2017, and acquired geophysical data to support remotely operated vehicle exploration of seep sites using the Global Explorer, which is operated by Oceaneering International, Inc. Geophysical operations during cruise 2017-002-FA from August 25 to September 6, 2017, were also focused on mapping water column methane plumes, sea-floor seep sites, and subseafloor strata, but primarily supported conductivity, temperature, and depth instrument deployment, surface-water methane-concentration mapping, and water-sampling operations as part of a collaborative study with the University of Rochester of the effect of methane seepage on ocean water biogeochemistry. The National Oceanic and Atmospheric Administration’s Office of Ocean Exploration and Research partially sponsored cruise 2017-001-FA, and the U.S. Department of Energy partially sponsored both cruises.
num_resources 2
num_tags 57
title Split-beam echo sounder - navigation points, tracklines, and profile images for Simrad EK60 split-beam echo sounder data collected during USGS field activities 2017-001-FA and 2017-002-FA.