• français 
    • español
    • English
    • français
  • FacebookPinterestTwitter
  • español
  • English
  • français
Voir le document 
  •   Accueil de DIGIBUG
  • 1.-Investigación
  • Departamentos, Grupos de Investigación e Institutos
  • Instituto Interuniversitario de Investigación del Sistema Tierra en Andalucía (IISTA)
  • IISTA - Artículos
  • Voir le document
  •   Accueil de DIGIBUG
  • 1.-Investigación
  • Departamentos, Grupos de Investigación e Institutos
  • Instituto Interuniversitario de Investigación del Sistema Tierra en Andalucía (IISTA)
  • IISTA - Artículos
  • Voir le document
JavaScript is disabled for your browser. Some features of this site may not work without it.

Preliminary results of a non-spherical aerosol method for the retrieval of the atmospheric aerosol optical properties

[PDF] 4-1-s2.0-S002240730500395X-main.pdf (259.4Ko)
Identificadores
URI: https://hdl.handle.net/10481/98707
DOI: 10.1016/j.jqsrt.2005.11.047
Exportar
RISRefworksMendeleyBibtex
Estadísticas
Statistiques d'usage de visualisation
Metadatos
Afficher la notice complète
Auteur
Olmo Reyes, Francisco José; Quirantes, A.; Alcántara, A.; Lyamani, Hassan; Alados Arboledas, Lucas
Editorial
Elsevier
Materia
aerosol properties
 
Non-spherical particles
 
Aerosol models
 
Date
2005
Patrocinador
Education and Research Spanish Ministry through Projects REN 2003-03175 and CGL2004-05984-C07-03; AERONET staff for the data collection
Résumé
There is experimental evidence that the non-sphericity of certain atmospheric particles can cause scattering properties different from those predicted by standard Mie theory. Numerous studies indicate the need to consider the presence of non-spherical particles in modeling the optical properties of atmospheric aerosols. On the other hand, natural aerosols show a great variety of shapes, making difficult a realistic choice of a particle shape (or shape mixture) model. In this paper, we test a parameterization of the particle shape in the retrieval of size distribution, phase function, single scattering albedo and asymmetry parameter from direct and sky-radiance measurements. For this purpose we have substituted the Kernel based on the Mie theory included in the model SKYRAD.PACK by one derived for non-spherical particles. The method is applied under different atmospheric conditions, including Saharan dust outbreak, polluted and local mineral episodes. We compare the results with those obtained by the well known spheroids algorithm used in the AERONET network.
Colecciones
  • IISTA - Artículos

Mon compte

Ouvrir une sessionS'inscrire

Parcourir

Tout DIGIBUGCommunautés et CollectionsPar date de publicationAuteursTitresSujetsFinanciaciónPerfil de autor UGRCette collectionPar date de publicationAuteursTitresSujetsFinanciación

Statistiques

Statistiques d'usage de visualisation

Servicios

Pasos para autoarchivoAyudaLicencias Creative CommonsSHERPA/RoMEODulcinea Biblioteca UniversitariaNos puedes encontrar a través deCondiciones legales

Contactez-nous | Faire parvenir un commentaire