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MAPCO2 Buoy: Olowalu, Maui, Hawaii

Data provided by  National Oceanic and Atmospheric Administration

This buoy is located approximately 500 meters offshore of the west coast of the island of Maui near Olowalu in the State of Hawaii. It is moored in waters 15 m (50 ft) deep. Data are recorded every 3 hours and transmitted daily. This Moored Autonomous Partial Pressure of Carbon Dioxide (MAPCO2) buoy was primarily established to monitor ocean acidification within a tropical coral reef ecosystem in the Central Pacific, complementing a national array of moored carbon dioxide buoys across the Pacific, Atlantic, and Caribbean.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/mapco2_maui

maracoos_01-20200820T1459

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_01-20200820T1459

maracoos_01-20201006T1417

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_01-20201006T1417

maracoos_01-20210727T1605

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_01-20210727T1605

maracoos_01-20210818T1454

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_01-20210818T1454

maracoos_01-20220914T1748

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_01-20220914T1748

maracoos_01-20230118T1721

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 regional ocean features. The goal of the project is to provide realtime, baseline data on the thermal structure of the Mid-Atlantic Bight shelf waters. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_01-20230118T1721

maracoos_01-20240124T1612

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 regional ocean features. The goal of the project is to provide real-time baseline data on the thermal structure of the Mid-Atlantic Bight shelf waters. This project's secondary mission is to compare experimental animal CTD tag with glider CTD measurements, as well as to test tag-collected CTD profile transmission rates to the Argos satellite system.

Modified:

Source: https://www.ncei.noaa.gov/metadata/geoportal//rest/metadata/item/maracoos_01-20240124T1612

maracoos_01-20240805T1617

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_01-20240805T1617

maracoos_01-20241022T1346

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