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Satellite Analysis Branch (SAB) Tropical Cyclone Position and Dvorak Intensity Estimates, Global from 20220726 to 20231231 (NCEI Accession 0309781)

The NOAA/National Environmental Satellite, Data, and Information Service (NESDIS)/Office of Satellite and Product Operations (OSPO) Satellite Analysis Branch provides position and intensity estimates derived from the Dvorak Technique (DT) for tropical disturbances across the globe every 6 hours. This dataset provides SAB's Tropical Cyclone Analysis Worksheet for each system that was classified. Dvorak estimates to include DT, FT, PT, MET and CI T-Numbers as well as position estimates done every six hours, globally.

About this Dataset

Updated: 2025-12-01
Metadata Last Updated: 2025-11-30T16:17:19.285Z
Date Created: N/A
Data Provided by:
Dataset Owner: N/A

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Table representation of structured data
Title Satellite Analysis Branch (SAB) Tropical Cyclone Position and Dvorak Intensity Estimates, Global from 20220726 to 20231231 (NCEI Accession 0309781)
Description The NOAA/National Environmental Satellite, Data, and Information Service (NESDIS)/Office of Satellite and Product Operations (OSPO) Satellite Analysis Branch provides position and intensity estimates derived from the Dvorak Technique (DT) for tropical disturbances across the globe every 6 hours. This dataset provides SAB's Tropical Cyclone Analysis Worksheet for each system that was classified. Dvorak estimates to include DT, FT, PT, MET and CI T-Numbers as well as position estimates done every six hours, globally.
Modified 2025-11-30T16:17:19.285Z
Publisher Name N/A
Contact N/A
Keywords 0309781 , Tropical Cyclones , satellite sensor - visible to infrared , visual analysis , Dvorak technique , meteorological , remote sensing , satellite data , Earth Observation Satellites , NOAA Office of Satellite and Product Operations , World-Wide Distribution , meteorology , DOC/NOAA/NESDIS/OSPO > Office of Satellite and Product Operations, NESDIS, NOAA, U.S. Department of Commerce , SAB Tropical Cyclone Position and Dvorak Intenisty Estimates Global , EARTH SCIENCE > ATMOSPHERE > WEATHER EVENTS > TROPICAL CYCLONES , Dvorak Current Intensity , Geostationary, IR and Visible , SATELLITES > SATELLITES , GEOGRAPHIC REGION > GLOBAL OCEAN , Global , F5X5FC , environment , oceans , climatologyMeteorologyAtmosphere
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