Percentage of time sediment is mobile for May, 2010 - May, 2011 at select points in the Gulf of Maine south into the Middle Atlantic Bight (GMAINE_mobile_perc.SHP, Geographic, WGS 84)

The U.S. Geological Survey has been characterizing the regional variation in shear stress on the sea floor and sediment mobility through statistical descriptors. The purpose of this project is to identify patterns in stress in order to inform habitat delineation or decisions for anthropogenic use of the continental shelf. The statistical characterization spans the continental shelf from the coast to approximately 120 m water depth, at approximately 0.03 degree (2.5-3.75 km, depending on latitude) resolution. Time-series of wave and circulation are created using numerical models, and near-bottom output of steady and oscillatory velocities and an estimate of bottom roughness are used to calculate a time-series of bottom shear stress at 1-hour intervals. Statistical descriptions such as the median and 95th percentile, which are the output included with this database, are then calculated to create a two-dimensional picture of the regional patterns in shear stress. In addition, time-series of stress are compared to critical stress values at select points calculated from observed surface sediment texture data to determine estimates of sea floor mobility.

Data e Risorse

Campo Valore
accessLevel public
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identifier USGS:cc8ee2b5-c581-49e9-8307-a3f4968f46e9
metadata_type geospatial
modified 20211119
old-spatial -74.140330, 39.786130, -64.500000, 45.056108
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
source_datajson_identifier true
source_hash 7e892b1c40a6d88a81a7789a8cbc13ddb21b90d5
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spatial {"type": "Polygon", "coordinates": [[[-74.140330, 39.786130], [-74.140330, 45.056108], [ -64.500000, 45.056108], [ -64.500000, 39.786130], [-74.140330, 39.786130]]]}
theme {geospatial}
Gruppi
  • AmeriGEOSS
  • National Provider
  • North America
Tag
  • alteration-of-benthic-habitats
  • amerigeo
  • amerigeoss
  • atlantic-ocean
  • bottom-shear-stress
  • ckan
  • cmgp
  • cmhrp
  • cmsp
  • coastal-and-marine-geology-program
  • coastal-and-marine-hazards-and-resources-program
  • coastal-and-marine-spatial-planning
  • continental-island-shelf
  • current
  • fvcom
  • geo
  • georges-bank
  • geoscientificinformation
  • geoss
  • grant-madsen
  • gulf-of-maine
  • gulf-of-maine-bay-of-fundy-ecoregion
  • habitat-alteration-and-disturbance
  • hudson-shelf-valley
  • long-island
  • long-island-sound
  • marine-nearshore-subtidal
  • marine-offshore-subtidal
  • massachusetts-bay
  • mathematical-modeling
  • middle-atlantic-bight
  • nantucket-shoals
  • national
  • new-york-bight
  • north-america
  • numerical-modeling
  • ocean-processes
  • oceans
  • predictions
  • rhode-island-sound
  • sea-floor
  • sea-floor-characteristics
  • sea-floor-habitat
  • seabed
  • seafloor
  • sediment-mobility
  • sediment-transport
  • stellwagen-bank
  • substrate
  • swan
  • u-s-east-coast
  • u-s-geological-survey
  • united-states
  • usgs
  • usgs-cc8ee2b5-c581-49e9-8307-a3f4968f46e9
  • wave
  • whcmsc
  • woods-hole-coastal-and-marine-science-center
isopen False
license_id notspecified
license_title License not specified
maintainer P. Soupy Dalyander
maintainer_email sdalyander@usgs.gov
metadata_created 2025-11-22T12:55:15.047699
metadata_modified 2025-11-22T12:55:15.047704
notes The U.S. Geological Survey has been characterizing the regional variation in shear stress on the sea floor and sediment mobility through statistical descriptors. The purpose of this project is to identify patterns in stress in order to inform habitat delineation or decisions for anthropogenic use of the continental shelf. The statistical characterization spans the continental shelf from the coast to approximately 120 m water depth, at approximately 0.03 degree (2.5-3.75 km, depending on latitude) resolution. Time-series of wave and circulation are created using numerical models, and near-bottom output of steady and oscillatory velocities and an estimate of bottom roughness are used to calculate a time-series of bottom shear stress at 1-hour intervals. Statistical descriptions such as the median and 95th percentile, which are the output included with this database, are then calculated to create a two-dimensional picture of the regional patterns in shear stress. In addition, time-series of stress are compared to critical stress values at select points calculated from observed surface sediment texture data to determine estimates of sea floor mobility.
num_resources 2
num_tags 58
title Percentage of time sediment is mobile for May, 2010 - May, 2011 at select points in the Gulf of Maine south into the Middle Atlantic Bight (GMAINE_mobile_perc.SHP, Geographic, WGS 84)