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Development of a GOES-R Advanced Baseline Imager Solar Channel Radiance Simulator for Ice Clouds
Author(s) -
Shouguo Ding,
Ping Yang,
Bryan A. Baum,
Andrew K. Heidinger,
Thomas J. Greenwald
Publication year - 2012
Publication title -
journal of applied meteorology and climatology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.079
H-Index - 134
eISSN - 1558-8432
pISSN - 1558-8424
DOI - 10.1175/jamc-d-12-0180.1
Subject(s) - radiance , radiative transfer , atmospheric radiative transfer codes , remote sensing , moderate resolution imaging spectroradiometer , environmental science , geostationary orbit , geostationary operational environmental satellite , transmittance , ice crystals , spectroradiometer , meteorology , optics , physics , satellite , geology , reflectivity , astronomy
This paper describes the development of an ice cloud radiance simulator for the anticipated Geostationary Operational Environmental Satellite R (GOES-R) Advanced Baseline Imager (ABI) solar channels. The simulator is based on the discrete ordinates radiative transfer (DISORT) model. A set of correlated k-distribution (CKD) models is developed for the ABI solar channels to account for atmospheric trace gas absorption. The CKD models are based on the ABI spectral response functions and also consider when multiple gases have overlapping absorption. The related errors of the transmittance profile are estimated on the basis of the exact line-by-line results, and it is found that errors in transmittance are less than 0.2% for all but one of the ABI solar channels. The exception is for the 1.378-μm channel, centered near a strong water vapor absorption band, for which the errors are less than 2%. For ice clouds, the band-averaged bulk-scattering properties for each ABI [and corresponding Moderate Resolut...

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