Chirp seismic reflection data from the Edgetech 512i collected in Little Egg Inlet and offshore the southern end of Long Beach Island, NJ, during USGS field activity 2018-001-FA (shotpoints point shapefile, survey trackline shapefile, PNG profile images, and SEG-Y trace data).

The natural resiliency of the New Jersey barrier island system, and the efficacy of management efforts to reduce vulnerability, depends on the ability of the system to recover and maintain equilibrium in response to storms and persistent coastal change. This resiliency is largely dependent on the availability of sand in the beach system. In an effort to better understand the system's sand budget and processes in which this system evolves, high-resolution geophysical mapping of the sea floor in Little Egg Inlet and along the southern end of Long Beach Island near Beach Haven, New Jersey was conducted from May 31 to June 10, 2018, followed by a sea floor sampling survey conducted from October 22 to 23, 2018, as part of a collaborative effort between the U.S. Geological Survey and Stockton University. Multibeam echo sounder bathymetry and backscatter data were collected along 741 kilometers of tracklines (approximately 200 square kilometers) of the coastal sea floor to regionally define its depth and morphology, as well as the type and distribution of sea-floor sediments. Six hundred ninety-two kilometers of seismic-reflection profile data were also collected to define the thickness and structure of sediment deposits in the inlet and offshore. These new data will help inform future management decisions that affect the natural and recreational resources of the area around and offshore of Little Egg Inlet. These mapping surveys provide high-quality data needed to build scientific knowledge of the evolution and behavior of the New Jersey barrier island system.

Data e Risorse

Campo Valore
accessLevel public
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identifier USGS:5f5f94ad82ce3550e3bff214
metadata_type geospatial
modified 20210422
old-spatial -74.472758, 39.378308, -74.197467, 39.566903
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
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source_hash 514ef222d34ec8e150a3b3b147c340955a271a14
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spatial {"type": "Polygon", "coordinates": [[[-74.472758, 39.378308], [-74.472758, 39.566903], [ -74.197467, 39.566903], [ -74.197467, 39.378308], [-74.472758, 39.378308]]]}
theme {geospatial}
Gruppi
  • AmeriGEOSS
  • National Provider
  • North America
Tag
  • amerigeo
  • amerigeoss
  • beach-haven
  • chirp
  • ckan
  • cmhrp
  • coastal-and-marine-hazards-and-resources-program
  • edgetech
  • field-activity-number-2018-001-fa
  • field-activity-number-2018-049-fa
  • forsythe-wildlife-refuge
  • geo
  • geoscientificinformation
  • geospatial-datasets
  • geoss
  • holgate
  • image
  • little-egg-inlet
  • location
  • long-beach-island
  • marine-geology
  • marine-geophysics
  • national
  • navigational-data
  • new-jersey
  • north-america
  • oceans
  • png
  • r-v-petrel
  • sb-512i
  • sea-floor
  • seafloor
  • seg-y-traces
  • seismic-navigation
  • seismic-profile
  • seismic-reflection
  • seismic-reflection-methods
  • shapefile
  • sub-bottom-profiling
  • trackline-navigation
  • u-s-geological-survey
  • united-states
  • united-states-of-america
  • usgs
  • usgs-5f5f94ad82ce3550e3bff214
  • whcmsc
  • woods-hole-coastal-and-marine-science-center
isopen False
license_id notspecified
license_title License not specified
maintainer Seth Ackerman
maintainer_email sackerman@usgs.gov
metadata_created 2025-11-21T03:39:21.529585
metadata_modified 2025-11-21T03:39:21.529588
notes The natural resiliency of the New Jersey barrier island system, and the efficacy of management efforts to reduce vulnerability, depends on the ability of the system to recover and maintain equilibrium in response to storms and persistent coastal change. This resiliency is largely dependent on the availability of sand in the beach system. In an effort to better understand the system's sand budget and processes in which this system evolves, high-resolution geophysical mapping of the sea floor in Little Egg Inlet and along the southern end of Long Beach Island near Beach Haven, New Jersey was conducted from May 31 to June 10, 2018, followed by a sea floor sampling survey conducted from October 22 to 23, 2018, as part of a collaborative effort between the U.S. Geological Survey and Stockton University. Multibeam echo sounder bathymetry and backscatter data were collected along 741 kilometers of tracklines (approximately 200 square kilometers) of the coastal sea floor to regionally define its depth and morphology, as well as the type and distribution of sea-floor sediments. Six hundred ninety-two kilometers of seismic-reflection profile data were also collected to define the thickness and structure of sediment deposits in the inlet and offshore. These new data will help inform future management decisions that affect the natural and recreational resources of the area around and offshore of Little Egg Inlet. These mapping surveys provide high-quality data needed to build scientific knowledge of the evolution and behavior of the New Jersey barrier island system.
num_resources 2
num_tags 47
title Chirp seismic reflection data from the Edgetech 512i collected in Little Egg Inlet and offshore the southern end of Long Beach Island, NJ, during USGS field activity 2018-001-FA (shotpoints point shapefile, survey trackline shapefile, PNG profile images, and SEG-Y trace data).