JPEG images of Seismic data collected by the U.S. Geological Survey as part of the Geologic Framework Studies project offshore of the Grand Strand, South Carolina

JPEG images of each seismic line were generated in order to incorporate images of the seismic data into Geographic Information System (GIS) projects and data archives utilizing HTML. The JPG format is universal and enables hassle-free transfer of data. These data yield a pictorial view of the seismic data acquired.In 1999, the USGS, in partnership with the South Carolina Sea Grant Consortium, began a study to investigate processes affecting shoreline change along the northern coast of South Carolina, focusing on the Grand Strand region. Previous work along the U.S. Atlantic coast shows that the structure and composition of older geologic strata located seaward of the coast heavily influences the coastal behavior of areas with limited sediment supply, such as the Grand Strand. By defining this geologic framework and identifying the transport pathways and sinks of sediment, geoscientists are developing conceptual models of the present-day physical processes shaping the South Carolina coast. The primary objectives of this research effort are: 1) to provide a regional synthesis of the shallow geologic framework underlying the coastal upland, shoreface and inner continental shelf, and define its role in coastal evolution and modern beach behavior; 2) to identify and model the physical processes affecting coastal ocean circulation and sediment transport, and to define their role in shaping the modern shoreline; and 3) to identify sediment sources and transport pathways; leading to construction of a regional sediment budget.

Data and Resources

Field Value
accessLevel public
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identifier USGS:c768eb7c-923d-46b8-9cea-391a4d3ba8e2
metadata_type geospatial
modified 20200908
old-spatial -79.175150, 33.143860, -78.516267, 33.845510
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
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source_hash 56b4b3766ce0163b07dce2ddc13c34640b7f04e8
source_schema_version 1.1
spatial {"type": "Polygon", "coordinates": [[[-79.175150, 33.143860], [-79.175150, 33.845510], [ -78.516267, 33.845510], [ -78.516267, 33.143860], [-79.175150, 33.143860]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
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  • amerigeoss
  • atlantic-ocean
  • ckan
  • cmgp
  • coastal-and-marine-geology-program
  • garden-city
  • geo
  • geoscientificinformation
  • geoss
  • grand-strand
  • image-collections
  • jepg
  • jpg
  • marine-geophysics
  • myrtle-beach
  • national
  • north-america
  • north-myrtle-beach
  • oceans
  • pawleys-island
  • segy
  • seismic-reflection
  • south-carolina
  • southeast-united-states
  • sub-bottom-profiling
  • surfside
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  • usgs
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  • waites-island
  • whsc
  • woods-hole-science-center
isopen False
license_id notspecified
license_title License not specified
maintainer Jane F. Denny
maintainer_email jdenny@usgs.gov
metadata_created 2025-11-21T12:30:25.498380
metadata_modified 2025-11-21T12:30:25.498385
notes JPEG images of each seismic line were generated in order to incorporate images of the seismic data into Geographic Information System (GIS) projects and data archives utilizing HTML. The JPG format is universal and enables hassle-free transfer of data. These data yield a pictorial view of the seismic data acquired.In 1999, the USGS, in partnership with the South Carolina Sea Grant Consortium, began a study to investigate processes affecting shoreline change along the northern coast of South Carolina, focusing on the Grand Strand region. Previous work along the U.S. Atlantic coast shows that the structure and composition of older geologic strata located seaward of the coast heavily influences the coastal behavior of areas with limited sediment supply, such as the Grand Strand. By defining this geologic framework and identifying the transport pathways and sinks of sediment, geoscientists are developing conceptual models of the present-day physical processes shaping the South Carolina coast. The primary objectives of this research effort are: 1) to provide a regional synthesis of the shallow geologic framework underlying the coastal upland, shoreface and inner continental shelf, and define its role in coastal evolution and modern beach behavior; 2) to identify and model the physical processes affecting coastal ocean circulation and sediment transport, and to define their role in shaping the modern shoreline; and 3) to identify sediment sources and transport pathways; leading to construction of a regional sediment budget.
num_resources 2
num_tags 34
title JPEG images of Seismic data collected by the U.S. Geological Survey as part of the Geologic Framework Studies project offshore of the Grand Strand, South Carolina