DocumentCode
1506890
Title
Early phase analysis of OCTS radiance data for aerosol remote sensing
Author
Nakajima, Teruyuki ; Higurashi, Akiko ; Aoki, Kazuma ; Endoh, Tatsuo ; Fukushima, Hajime ; Toratani, Mitsuhiro ; Mitomi, Yasushi ; Mitchell, B. Greg ; Frouin, Robert
Author_Institution
Center for Climate Syst. Res., Tokyo Univ., Japan
Volume
37
Issue
3
fYear
1999
fDate
5/1/1999 12:00:00 AM
Firstpage
1575
Lastpage
1585
Abstract
An analysis of ocean color temperature scanner [(OCTS) on board the advanced earth observation satellite (ADEOS)] spectral radiance data was performed for retrieving global distributions of Angstrom factor and exponent, which represent the aerosol optical thickness at a reference wavelength (500 nm in the authors´ study) and a spectral dependence of the optical thicknesses, respectively, over ocean. Determination of calibration constants for OCTS-received radiances and development of an efficient look-up table method for synthesizing the radiances are key issues for development of the present two-channel algorithm with use of channel 6 and 8 radiances of OCTS. This algorithm has been applied to Level-1B OCTS GAC data sets for producing three month (April, May, and June 1997) global distributions of Angstrom parameters. Geographical and seasonal distribution patterns of Angstrom parameters suggest that anthropogenic sulfate aerosols in mid-latitudes and biomass burning aerosols in the subtropical region are characterized by small particles having large Angstrom exponents, whereas mineral dust particles from subtropical arid regions are characterized by large particles having small Angstrom exponents. There was a fairly good agreement between satellite-retrieved values of Angstrom parameters and values obtained by sky radiometers located on coasts
Keywords
aerosols; air pollution measurement; atmospheric composition; atmospheric techniques; remote sensing; 500 nm; ADEOS; Angstrom factor; OCTS radiance data; aerosol; air pollution; anthropogenic sulfate aerosol; atmosphere; calibration; measurement technique; mineral dust particles; ocean color temperature scanner; optical thickness; retrieving global distribution; satellite remote sensing; spectral radiance; two-channel algorithm; Aerosols; Artificial satellites; Biomedical optical imaging; Calibration; Color; Information retrieval; Ocean temperature; Performance analysis; Temperature dependence; Temperature distribution;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/36.763268
Filename
763268
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