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126387 results found

ru34-20230303T1521

Data provided by  National Oceanic and Atmospheric Administration

This project uses glider-based passive acoustic monitoring to determine the presence/absence of spawning cod within in the immediate footprint of site preparation works in the South Fork Wind lease area and to use collected data to determine if an adaptive management strategy needs to be implemented.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20230303T1521

ru34-20230920T1506

Data provided by  National Oceanic and Atmospheric Administration

This project is conducting a 2-year baseline survey with a pair of gliders deployed in each season, and a 3rd glider deployed three times per year to fill coverage gaps in the seasonal glider deployments from the onset of seasonal stratification associated with the Cold Pool formation in the spring to the physical breakdown in the fall. This glider deployment is the second of three gap-fill missions this year. The gliders are integrated with a full complement of available sensors to simultaneously map oceanographic and ecological variables.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20230920T1506

ru34-20240112T1722

Data provided by  National Oceanic and Atmospheric Administration

This project is using a JASCO OceanObserver hydrophone attached to a glider to monitor and understand the spatial and temporal distribution of spawning cod aggregations in the Revolution Wind offshore wind lease area during the spawning season. These glider-based observations are occurring during construction activities that may include seabed preparation along cable routes and placement of scour protection at the foundation locations.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20240112T1722

ru34-20240301T1336

Data provided by  National Oceanic and Atmospheric Administration

This project is using a JASCO OceanObserver hydrophone attached to a glider to monitor and understand the spatial and temporal distribution of spawning cod aggregations in the Revolution Wind offshore wind lease area during the spawning season. These glider-based observations are occurring during construction activities that may include seabed preparation along cable routes and placement of scour protection at the foundation locations.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20240301T1336

ru34-20240301T1336-delayed

Data provided by  National Oceanic and Atmospheric Administration

This project is using a JASCO OceanObserver hydrophone attached to a glider to monitor and understand the spatial and temporal distribution of spawning cod aggregations in the Revolution Wind offshore wind lease area during the spawning season. These glider-based observations are occurring during construction activities that may include seabed preparation along cable routes and placement of scour protection at the foundation locations.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20240301T1336-delayed

ru34-20241102T1737

Data provided by  National Oceanic and Atmospheric Administration

This project is using a JASCO OceanObserver hydrophone attached to a glider to monitor and understand the spatial and temporal distribution of spawning cod aggregations in the Revolution Wind and Sunrise Wind offshore wind lease areas during the spawning season. These glider-based observations are occurring during construction activities that may include seabed preparation along cable routes and placement of scour protection at the foundation locations.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20241102T1737

ru34-20241102T1737-delayed

Data provided by  National Oceanic and Atmospheric Administration

This project is using a JASCO OceanObserver hydrophone attached to a glider to monitor and understand the spatial and temporal distribution of spawning cod aggregations in the Revolution Wind and Sunrise Wind offshore wind lease areas during the spawning season. These glider-based observations are occurring during construction activities that may include seabed preparation along cable routes and placement of scour protection at the foundation locations.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru34-20241102T1737-delayed

ru36-20220413T2107

Data provided by  National Oceanic and Atmospheric Administration

This project is focused on collecting data for onboard glider processing from an Acoustic Doppler Current Profiler (ADCP). This is specifically targeted at collecting data down to 1000 meters for development of onboard processing algorithms in a bench-top processor environment. Future deployments will include integrated processors carrying out onboard processing at sea.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru36-20220413T2107

ru36-20221102T1157

Data provided by  National Oceanic and Atmospheric Administration

The Predictions of AcousticS with Smart Experimental Networks of GlidERS (PASSENGERS) project is a partnership between universities and the Naval Research Laboratory to improve the capability of data-assimilative ocean models to predict acoustic propagation in dynamic oceanography environments. It includes the deployment of teams of gliders in small (10 km) spatial footprints with integrated passive acoustics focused on mapping the physical and acoustic environment in the dynamic region of the Atlantis II Seamounts.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru36-20221102T1157

ru36-20230525T1748

Data provided by  National Oceanic and Atmospheric Administration

The Predictions of AcousticS with Smart Experimental Networks of GlidERS (PASSENGERS) project is a partnership between universities and the Naval Research Laboratory to improve the capability of data-assimilative ocean models to predict acoustic propagation in dynamic oceanography environments. It includes the deployment of teams of gliders in small (10 km) spatial footprints with integrated passive acoustics focused on mapping the physical and acoustic environment in the dynamic region of the Atlantis II Seamounts.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/ru36-20230525T1748