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Federal
HFradar UMiami
National Oceanic and Atmospheric Administration, Department of Commerce —
High Frequency (HF) radar in Gulf of Mexico. UMiami data from a local source. -
Federal
Currents, HF Radar, US East Coast and Gulf of Mexico, RTV, Near-Real Time, 2012-present, Hourly, 2km, Lon0360
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 1.0 meters of the ocean. The main objective of near-real time processing is to... -
Federal
NEOWAVE Regional Tsunami Model: Hawaii: Kauai: Nawiliwili
National Oceanic and Atmospheric Administration, Department of Commerce —
Non-hydrostatic Evolution of Ocean WAVEs (NEOWAVE) regional tsunami model for Nawiliwili Harbor on the southeast coast of the island of Kauai in the state of Hawaii,... -
Federal
Currents, HFRadar, Bodega Bay, 1 hr, 2008-2009, EXPERIMENTAL, Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
The data is the 1 hour average of the zonal component of ocean surface currents derived from High Frequency Radio-derived measurements. THIS IS AN EXPERIMENTAL... -
Federal
Currents, HFRadar, SF Bay, 25 hr, 2006-2007, EXPERIMENTAL, Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
The data is the 25 hour running average of the zonal component of ocean surface currents derived from High Frequency Radio-derived measurements. THIS IS AN... -
Federal
Currents, HF Radar, US East Coast and Gulf of Mexico, RTV, Near-Real Time, 2012-present, Hourly, 6km
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 2.4 meters of the ocean. The main objective of near-real time processing is to... -
Federal
HFradar USF COMPS
National Oceanic and Atmospheric Administration, Department of Commerce —
High Frequency (HF) radar in Gulf of Mexico. University of South Florida (USF) data from a local source. -
Federal
Wind Diffusivity Current, Metop-A ASCAT, 0.25°, Global, Near Real Time, 2009-present (14 Day), Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
NOAA CoastWatch distributes science quality Ekman current (in zonal, meridional, and modulus sets) and Ekman upwelling data. This data begins with wind velocity... -
Federal
Currents, HF Radar, US East Coast and Gulf of Mexico, RTV, Near-Real Time, 2012-present, Hourly, 1km
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 0.5 meters of the ocean. The main objective of near-real time processing is to... -
Federal
Currents, HF Radar, US East Coast and Gulf of Mexico, RTV, Near-Real Time, 2012-present, Hourly, 1km, Lon0360
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 0.5 meters of the ocean. The main objective of near-real time processing is to... -
Federal
Currents, HFRadar, Ano Nuevo, 25 hr, 2008-2009, EXPERIMENTAL, Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
The data is the 25 hour running average of the zonal component of ocean surface currents derived from High Frequency Radio-derived measurements. THIS IS AN... -
Federal
Currents, HF Radar, US Hawai'i State, RTV, Near-Real Time, 2012-present, Hourly, 1km, Lon0360
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 0.5 meters of the ocean. The main objective of near-real time processing is to... -
Federal
Near-Real Time Surface Ocean Velocity, Puerto Rico and the Virgin Islands, 2km Resolution, 2025-present
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from High Frequency (HF)-Radar are representative of the upper 1.0 meters of the ocean. The main objective of near-real time... -
Federal
Near-Real Time Surface Ocean Velocity, Hawaii, 6 km Resolution
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar (HFR) are representative of the upper 0.3 - 2.5 meters of the ocean. The main objective of near-real time processing... -
Federal
MASTR - Yucatan High Frequency Radar - 6km Sea Surface Currents - 2024/01/15 to 2024/05/15 - Postprocessed
National Oceanic and Atmospheric Administration, Department of Commerce —
Yucatan 6km Sea Surface Currents. Radial Vectors quality controlled using hfradarpy Python toolbox -
Federal
Currents, HFRadar, Ano Nuevo, 1 hr, 2006-2009, EXPERIMENTAL, Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
The data is the 1 hour average of the zonal component of ocean surface currents derived from High Frequency Radio-derived measurements. THIS IS AN EXPERIMENTAL... -
Federal
HFradar TAMU GERG
National Oceanic and Atmospheric Administration, Department of Commerce —
High Frequency (HF) radar in Gulf of Mexico. TAMU data from a local source. -
Federal
NEOWAVE Regional Tsunami Model: Hawaii: Molokai: Kaunakakai
National Oceanic and Atmospheric Administration, Department of Commerce —
Non-hydrostatic Evolution of Ocean WAVEs (NEOWAVE) regional tsunami model for Kaunakakai Harbor on the south coast of the island of Molokai in the state of Hawaii,... -
Federal
Currents, HF Radar, US West Coast, RTV, Near-Real Time, 2012-present, Hourly, 1km
National Oceanic and Atmospheric Administration, Department of Commerce —
Surface ocean velocities estimated from HF-Radar are representative of the upper 0.5 meters of the ocean. The main objective of near-real time processing is to... -
Federal
Currents, HFRadar, SF Bay, 1 hr, 2006-2007, EXPERIMENTAL, Lon+/-180
National Oceanic and Atmospheric Administration, Department of Commerce —
The data is the 1 hour average of the zonal component of ocean surface currents derived from High Frequency Radio-derived measurements. THIS IS AN EXPERIMENTAL...