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maracoos_01-20241022T1346-delayed
Data provided by National Oceanic and Atmospheric Administration
This project supports the deployment and real-time data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall. This includes a partnership between the Integrated Ocean Observing System (IOOS) regional associations such as MARACOOS, SECOORA, CariCOOS and institutions including the University of Puerto Rico, University of the Virgin Islands, Skidaway Institute of Oceanography, University of Delaware, and Rutgers University.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_01-20241022T1346-delayed
maracoos_02-20210503T1937
Data provided by National Oceanic and Atmospheric Administration
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20210503T1937
maracoos_02-20210716T1814
Data provided by National Oceanic and Atmospheric Administration
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20210716T1814
maracoos_02-20210820T1546
Data provided by National Oceanic and Atmospheric Administration
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20210820T1546
maracoos_02-20211020T1322
Data provided by National Oceanic and Atmospheric Administration
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20211020T1322
maracoos_02-20220420T2011
Data provided by National Oceanic and Atmospheric Administration
This project is conducting seasonal deployments to investigate carbonate chemistry and monitor ocean acidification in the Mid-Atlantic Bight. The glider used for the automated observation includes an integrated deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20220420T2011
maracoos_02-20220420T2011-delayed
Data provided by National Oceanic and Atmospheric Administration
This project is conducting seasonal deployments to investigate carbonate chemistry and monitor ocean acidification in the Mid-Atlantic Bight. The glider used for the automated observation includes an integrated deep rated version of the Ion Sensitive Field Effect Transistor (ISFET)-based pH sensor. The pH sensor unit is complemented with existing glider sensors including a CTD, a WETLabs FLBBCD ECO puck configured for simultaneous chlorophyll fluorescence and optical backscatter measurements, and an Aanderaa Optode for measuring dissolved oxygen.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20220420T2011-delayed
maracoos_02-20230505T1613
Data provided by National Oceanic and Atmospheric Administration
The GLIDE project is an ocean monitoring program using autonomous underwater gliders to establish baseline oceanographic and ecological datasets to inform responsible development of offshore wind in New York Bight wind lease blocks.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20230505T1613
maracoos_02-20240124T1445
Data provided by National Oceanic and Atmospheric Administration
The GLIDE project is an ocean monitoring program using autonomous underwater gliders to establish baseline oceanographic and ecological datasets to inform responsible development of offshore wind in New York Bight wind lease blocks.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20240124T1445
maracoos_02-20240301T1425
Data provided by National Oceanic and Atmospheric Administration
This glider deployment will profile along a mission track between the Leading Light Wind (LLW) lease area and the shelf break in order to sample oceanographic variables and monitor North Atlantic right whale (NARW) presence in the area. The glider will be equipped with a CTD to determine water depth, temperature, salinity, and density, an optics puck measuring chlorophyll-a and colored dissolved organic matter (CDOM) fluorescence, an Optode measuring dissolved oxygen, and a DMON passive acoustics sensor for marine mammal monitoring and detection.
Modified:
Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_02-20240301T1425