N: 90 S: -90 E: 180 W: -180
Description
The Visible Infrared Imaging Radiometer Suite (VIIRS) NASA standard Level 2 (L2) Deep Blue Aerosol Products from the Joint Polar Satellite System (JPSS) series NOAA-20 instrument provide satellite-derived measurements of Aerosol Optical Thickness (AOT) and their properties over land and ocean in 6-minute data granules with daily, global coverage. The Deep Blue algorithm draws its heritage from previous applications to retrieve AOT from Sea‐viewing Wide Field‐of‐view Sensor (SeaWiFS) over both land and ocean, and Moderate Resolution Imaging Spectroradiometer (MODIS) measurements over land. This L2 description pertains to the VIIRS Deep Blue Aerosol version 2.1 (v2.1) product, whose record starts on January 5, 2018 (2018-005).
This orbit-level product (Short-name: AERDB_L2_VIIRS_NOAA20) has an at-nadir resolution of 6 km x 6 km and progressively increases away from nadir given the sensor’s scanning geometry and Earth’s curvature. Viewed differently, this product’s resolution accommodates 8 x 8 native VIIRS moderate-resolution (M-band) pixels that nominally have a horizontal pixel size of ~750 m. The L2 Deep Blue AOT data products, at 550 nm reference wavelength, are derived from VIIRS bands using two primary AOT retrieval algorithms: the Deep Blue algorithm over land, and the Satellite Ocean Aerosol Retrieval (SOAR) Algorithm over ocean. Although this product is called Deep Blue based on retrievals for the land algorithm, the data include over-water retrievals as well.
The L2 netCDF product, acquired every 6 minutes, contains 56 Science Data Set (SDS) layers that include the following:
- Aerosol_Optical_Thickness_550_Expected_Uncertainty_Land
- Aerosol_Optical_Thickness_550_Expected_Uncertainty_Ocean
- Aerosol_Optical_Thickness_550_Land
- Aerosol_Optical_Thickness_550_Land_Best_Estimate
- Aerosol_Optical_Thickness_550_Land_Ocean
- Aerosol_Optical_Thickness_550_Land_Ocean_Best_Estimate
- Aerosol_Optical_Thickness_550_Ocean
- Aerosol_Optical_Thickness_550_Ocean_Best_Estimate
- Aerosol_Optical_Thickness_550_STDV_Land
- Aerosol_Optical_Thickness_550_STDV_Ocean
- Aerosol_Optical_Thickness_QA_Flag_Land
- Aerosol_Optical_Thickness_QA_Flag_Ocean
- Aerosol_Type_Land
- Aerosol_Type_Land_Ocean
- Aerosol_Type_Ocean
- Algorithm_Flag_Land
- Algorithm_Flag_Ocean
- Angstrom_Exponent_Land
- Angstrom_Exponent_Land_Best_Estimate
- Angstrom_Exponent_Land_Ocean
- Angstrom_Exponent_Land_Ocean_Best_Estimate
- Angstrom_Exponent_Ocean
- Angstrom_Exponent_Ocean_Best_Estimate
- Cell_Average_Elevation_Land
- Cell_Average_Elevation_Ocean
- Fine_Mode_Fraction_550_Ocean
- Fine_Mode_Fraction_550_Ocean_Best_Estimate
- Idx_Atrack
- Idx_Xtrack
- Land_Bands
- Latitude
- Longitude
- NDVI
- Number_Of_Pixels_Used_Land
- Number_Of_Pixels_Used_Ocean
- Number_Valid_Pixels
- Ocean_Bands
- Ocean_Sum_Squares
- Precipitable_Water
- Reflectance_Bands
- Relative_Azimuth_Angle
- Scan_Start_Time
- Scattering_Angle
- Solar_Zenith_Angle
- Spectral_Aerosol_Optical_Thickness_Land
- Spectral_Aerosol_Optical_Thickness_Ocean
- Spectral_Single_Scattering_Albedo_Land
- Spectral_Surface_Reflectance
- Spectral_TOA_Reflectance_Land
- Spectral_TOA_Reflectance_Ocean
- Surface_Pressure
- Total_Column_Ozone
- Unsuitable_Pixel_Fraction_Land_Ocean
- Viewing_Zenith_Angle
- Wind_Direction
- Wind_Speed
Differences Between the v2.1 and v2.0 VIIRS Deep Blue Aerosol Collections
- VIIRS-derived Deep Blue Aerosol Products are now available from the NOAA-21, NOAA-20, and Suomi National Polar-orbiting Partnership (SNPP) platforms.
- Dome C (a calibration site in eastern Antarctica) cross-calibration between SNPP and NOAA-21 has been incorporated to ensure radiometric consistency.
- AOT spatial distribution has been improved over North Africa (particularly between the Sahara and Sahel regions) and South Asia (around the Thar Desert and Indus River Basin).
- Aerosol optical models (i.e., single-scattering albedo) have been adjusted over North America, the Sahel, Southern Africa, and India to further optimize retrieval performance.* More rigorous Sun-glint screening has been implemented for over-water retrievals, reducing contamination at the expense of some spatial coverage.
Cloud filters have been revised to better retain heavy dust plumes and to better remove thin clouds and sea fog over water.
Consult the VIIRS Deep Blue Aerosol Product User Guide for additional information regarding the global attributes, data field attributes, quality flags, software for handling and using these data products, and other relevant information.
Product Summary
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YYYYDDD = Data acquisition year and Day-of-year per the Julian Calendar
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Documents
USER'S GUIDE
PI DOCUMENTATION
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
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