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}NASA Earthdata CMR + NASA Data Portal2022 · Image data
GPS Radio Occultation Boundary Layer Depth Annual L3 V2 (GPSROZPBLA)This dataset provides an annual average climatology of planetary boundary layer (PBL) height derived from COSMIC/FORMOSAT-3, TerraSAR-X, KOMPSAT-5, and PAZ Global Positioning System (GPS) radio occultation (RO) measurements. The COSMIC/FORMOSAT-3 mission consists of a six-satellite constellation launched in 2006. Each satellite carries an Integrated GPS Occultation Receiver (IGOR) GPS receiver and
NASA Earthdata CMR + NASA Data Portal2022 · Image data
GPS Radio Occultation Boundary Layer Depth Seasonal L3 V2 (GPSROZPBLS)This dataset provides a seasonal average climatology of global planetary boundary layer (PBL) height derived from COSMIC/FORMOSAT-3, TerraSAR-X, KOMPSAT-5, and PAZ Global Positioning System (GPS) radio occultation (RO) measurements. The COSMIC/FORMOSAT-3 mission consists of a six-satellite constellation launched in 2006. Each satellite carries an Integrated GPS Occultation Receiver (IGOR) GPS rece
NASA Earthdata CMR + NASA Data Portal2018 · Image data
GPS Radio Occultation Boundary Layer Depth Seasonal L3 V1 (GPSROZPBLS)This dataset has been superseded by version 2. It provides seasonal averages of a global planetary boundary layer (PBL) height climatology derived from the COSMIC/FORMOSAT-3 and TerraSAR-X Global Positioning System (GPS) radio occultation (RO) measurements from June 2006 to December 2015. The COSMIC/FORMOSAT-3 mission consists of a six-satellite constellation launched in 2006. Each satellite carri
NASA Earthdata CMR + NASA Data Portal2018 · Image data
GPS Radio Occultation Boundary Layer Depth Annual L3 V1 (GPSROZPBLA)This dataset has been superseded by version 2. It provides an annual average of a global planetary boundary layer (PBL) height climatology derived from the COSMIC/FORMOSAT-3 and TerraSAR-X Global Positioning System (GPS) radio occultation (RO) measurements from June 2006 to December 2015. The COSMIC/FORMOSAT-3 mission consists of a six-satellite constellation launched in 2006. Each satellite carri
NASA Earthdata CMR + National Center for Atmospheric Research2006 · collection
UCAR COSMIC Data Analysis and Archive Center (CDAAC) CHAMP, SAC-C and GPS/MET data productsThe UCAR COSMIC Data Analysis and Archive Center (CDAAC) provides HAMP, SAC-C and GPS/MET data using the CDAAC 2.0 software. Data access is free, but users must submit a data agreement. Data and information available directly from the project web site include: Zenith Troposphere Comparisons, Monthly Statistics, Occultation Failure Percentages, File Inventories, and Ionosonde comparisons.
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2B temperature, pressure, and water vapor retrieval for COSMIC1 as contributed by UCAR, version 2.0 (gnssro_cosmic1_ucar_l2b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Temperature, Pressure, and Water Vapor data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the University Corporation for Atmospheric Research. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the refract
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2A bending angle, refractivity, and dry pressure for COSMIC1 as contributed by UCAR, version 2.0 (gnssro_cosmic1_ucar_l2a)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Bending Angle, Refractivity, and Dry Pressure data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the University Corporation for Atmospheric Research. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L1B excess phase and amplitude for COSMIC1 as contributed by UCAR, version 2.0 (gnssro_cosmic1_ucar_l1b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Excess Phase and Amplitude data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the University Corporation for Atmospheric Research. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the refracted radio sig
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2B temperature, pressure, and water vapor retrieval for COSMIC1 as contributed by ROMSAF, version 2.0 (gnssro_cosmic1_romsaf_l2b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Temperature, Pressure, and Water Vapor data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the Radio Occultation Meteorology Satellite Application Facilities. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measu
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2A bending angle, refractivity, and dry pressure for COSMIC1 as contributed by ROMSAF, version 2.0 (gnssro_cosmic1_romsaf_l2a)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Bending Angle, Refractivity, and Dry Pressure data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the Radio Occultation Meteorology Satellite Application Facilities. Each granule represents a single occultation. GNSS RO is a remote sensing technique tha
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L1B excess phase and amplitude for COSMIC1 as contributed by EUMETSAT, version 2.0 (gnssro_cosmic1_eumetsat_l1b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Excess Phase and Amplitude data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the European Organisation for the Exploitation of Meteorological Satellites. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2B temperature, pressure, and water vapor retrieval for COSMIC1 as contributed by JPL, version 2.0 (gnssro_cosmic1_jpl_l2b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Temperature, Pressure, and Water Vapor data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the Jet Propulsion Laboratory. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the refracted radio signals gener
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L1B excess phase and amplitude for COSMIC1 as contributed by JPL, version 2.0 (gnssro_cosmic1_jpl_l1b)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Excess Phase and Amplitude data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the Jet Propulsion Laboratory. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the refracted radio signals generated by GNSS
NASA Earthdata CMR + NASA Data Portal2006 · Image data
GNSS radio occultation L2A bending angle, refractivity, and dry pressure for COSMIC1 as contributed by JPL, version 2.0 (gnssro_cosmic1_jpl_l2a)This dataset provides Global Navigation Satellite System (GNSS) Radio Occultation (RO) Bending Angle, Refractivity, and Dry Pressure data from the Constellation Observing System for Meteorology Ionosphere & Climate - 1 mission as contributed by the Jet Propulsion Laboratory. Each granule represents a single occultation. GNSS RO is a remote sensing technique that measures the refracted radio signal
NASA Earthdata CMRArray ·
Atmospheric Profiles from COSMIC Occultation DataUsing a radio occultation technique, scientists are able to use signals broadcast from Global Positioning System (GPS) satellites to retrieve profiles of bending angles, refractivity, temperature, pressure, and water vapor in the atmosphere. Also, profiles of electron density in the ionosphere. Such data are gathered and processed at the Constellation Observing System for Meteorology, Ionosphere,