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Aerosol optical properties assessed by an inversion method using the solar principal plane for non-spherical particles

[PDF] 8-1-s2.0-S0022407307003688-main.pdf (1.418Mo)
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URI: https://hdl.handle.net/10481/98725
DOI: 10.1016/j.jqsrt.2007.12.019
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Auteur
Olmo Reyes, Francisco José; Quirantes, A.; Lara, V.; Lyamani, Hassan; Alados Arboledas, Lucas
Editorial
Elsevier
Materia
aerosol properties
 
Non-spherical particles
 
Aerosol models
 
Date
2007-12-21
Patrocinador
Education and Research Spanish Ministry through Projects CGL2004-05984-C07-03, CGL2007-66477-C02-01 and FIS2005- 06860-C02-01; Andalusian Regional Government through Project P06-RNM-01503
Résumé
Adequate modeling of light scattering by non-spherical particles is one of the major difficulties in remote sensing of atmospheric aerosols, mainly in desert dust outbreaks. In this paper we test a parameterization of the particle shape in size distribution, single-scattering albedo, phase function and asymmetry parameter retrieval from beam and sky-radiance measurements, based on the model Skyrad.pack, taking into account the principal plane measurements configuration. The method is applied under different Saharan dust outbreaks. We compare the results with those obtained by the almucantar measurements configuration. The results obtained by both methodologies agree and make possible to extend the parameter retrieval to smaller zenith angles than that used in the retrieval from almucantar geometries.
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