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Simultaneous Retrieval of Multiple Aerosol Parameters Using a Multi-Angular Approach
- Source :
- Proceedings of the 9th Conference on Atmospheric Radiation.
- Publication Year :
- 1997
- Publisher :
- United States: NASA Center for Aerospace Information (CASI), 1997.
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Abstract
- Atmospheric aerosol particles, both natural and anthropogenic, are important to the earth's radiative balance through their direct and indirect effects. They scatter the incoming solar radiation (direct effect) and modify the shortwave reflective properties of clouds by acting as cloud condensation nuclei (indirect effect). Although it has been suggested that aerosols exert a net cooling influence on climate, this effect has received less attention than the radiative forcing due to clouds and greenhouse gases. In order to understand the role that aerosols play in a changing climate, detailed and accurate observations are a prerequisite. The retrieval of aerosol optical properties by satellite remote sensing has proven to be a difficult task. The difficulty results mainly from the tenuous nature and variable composition of aerosols. To date, with single-angle satellite observations, we can only retrieve reliably against dark backgrounds, such as over oceans and dense vegetation. Even then, assumptions must be made concerning the chemical composition of aerosols. The best hope we have for aerosol retrievals over bright backgrounds are observations from multiple angles, such as those provided by the MISR and POLDER instruments. In this investigation we examine the feasibility of simultaneous retrieval of multiple aerosol optical parameters using reflectances from a typical set of twelve angles observed by the French POLDER instrument. The retrieved aerosol optical parameters consist of asymmetry factor, single scattering albedo, surface albedo, and optical thickness.
- Subjects :
- Environment Pollution
Subjects
Details
- Language :
- English
- Database :
- NASA Technical Reports
- Journal :
- Proceedings of the 9th Conference on Atmospheric Radiation
- Notes :
- NAGw-4791, , NAGw-3922, , NSF ATM-92-24523
- Publication Type :
- Report
- Accession number :
- edsnas.19970023063
- Document Type :
- Report