Info hash | 3b4c08297df0ddab3548f77ead1529e5aeb82734 |
Last mirror activity | 0:54 ago |
Size | 48.79GB (48,793,819,269 bytes) |
Added | 2025-04-23 06:45:25 |
Views | 4 |
Hits | 11 |
ID | 5429 |
Type | multi |
Downloaded | 10 time(s) |
Uploaded by | |
Folder | rtv |
Num files | 434 files [See full list] |
Mirrors | 3 complete, 4 downloading = 7 mirror(s) total [Log in to see full list] |

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Type: Dataset
Tags: NOAA, NCEI, NDBC, ocean currents, HFRADAR, shore-based hf radar readings, wind-driven circulation, tidal currents, coastal processes
Bibtex:
Tags: NOAA, NCEI, NDBC, ocean currents, HFRADAR, shore-based hf radar readings, wind-driven circulation, tidal currents, coastal processes
Bibtex:
@article{, title= {noaa-ncei-ndbc-hfradar-real-time-vectors}, journal= {}, author= {NOAA IOOS Surface Currents Program; NOAA National Data Buoy Center}, year= {}, url= {https://www.ncei.noaa.gov/access/metadata/landing-page/bin/iso?id=gov.noaa.nodc:IOOS-HFRadarRTVector}, abstract= {This dataset contains near-real-time ocean surface velocities, also known as total vector velocities, derived from high-frequency (HF) radar stations. The velocities are arranged in a horizontal latitude/longitude grid. Measured velocities are indicative of the upper 0.3 - 2.5 meters of the ocean depending on the operating frequency of the HF-radar and the vertical velocity profile of the water column. Data files are in NetCDF format following the CF (Climate and Forecast) Metadata Conventions. Velocities are reported in CF variables surface_eastward_sea_water_velocity and surface_northward_sea_water_velocity. The National Data Buoy Center (NDBC) â in collaboration with the Scripps Institution of Oceanography through June 2025 and thereafter with NOAAâs National Environmental Satellite, Data, and Information Service (NESDIS) â assembles the data from the Integrated Ocean Observing System (IOOS) Surface Currents Programâs HF-Radar National Network and submits the data on a monthly basis to NOAAâs National Centers for Environmental Information (NCEI). Remote sensing of ocean surface velocity from shore-based HF-radar sensors bridges the operational observational gap between point samples obtained from in-situ sampling and synoptic scale relatively low resolution data obtained from satellites by providing continuous mesoscale coverage at relatively high resolution near the coast. }, keywords= {NOAA, NCEI, NDBC, HFRADAR, shore-based hf radar readings, ocean currents, wind-driven circulation, tidal currents, coastal processes}, terms= {}, license= {}, superseded= {} }