Remote measurement of aerosol optical properties using the NOAA POES AVHRR and GOES Imager during TARFOX
Authors
Brown, Brian B.
Advisors
Durkee, Philip A.
Wash, Carlyle H.
Second Readers
Subjects
Radiative transfer
NOAA AVHRR
GOES
Aerosol optical depth
TARFOX
NOAA AVHRR
GOES
Aerosol optical depth
TARFOX
Date of Issue
1997-06
Date
June 1997
Publisher
Monterey, California. Naval Postgraduate School
Language
eng
Abstract
A radiative transfer algorithm in the solar wavelengths for the NOAA POES AVHRR and GOES Imager is proposed for the cloud-free, marine atmosphere. The algorithm combines linearized, single-scattering theory with an estimate of bi-directional surface reflectance. Phase functions are parameterized using an aerosol distribution model and the ratio of radiance values measured in channels 1 and 2 of the AVHRR. Retrieved satellite aerosol optical depth is compared to airborne sunphotometer data and derived values from particle size distributions collected during the Tropospheric Aerosol Radiative Forcing Observational Experiment (TARFOX) in July 1996. Error in the satellite derived values from the AVHRR originates in error in modeling aerosol size distributions, corresponding phase function parameterization and treatment of specular surface reflectance. Extension of the algorithm to the GOES Imager provided results consistent with the AVHRR.
Type
Thesis
Description
Series/Report No
Department
Meteorology
Organization
Naval Postgraduate School
Identifiers
NPS Report Number
Sponsors
Funding
Format
Citation
Distribution Statement
Approved for public release; distribution is unlimited.
Rights
This publication is a work of the U.S. Government as defined in Title 17, United States Code, Section 101. Copyright protection is not available for this work in the United States.
