JOURNAL ARTICLE

Estimation of land surface albedo time series and trends based on MODIS data

Nikos BenasNektarios Chrysoulakis

Year: 2014 Journal:   Proceedings of SPIE, the International Society for Optical Engineering/Proceedings of SPIE Vol: 9239 Pages: 92390Q-92390Q   Publisher: SPIE

Abstract

The land surface albedo is among the most important parameters controlling the atmospheric radiation fluxes and the surface–atmosphere interactions. In the present study, surface albedo parameters and aerosol optical thickness (AOT) data from the Moderate Resolution Imaging Spectroradiometer (MODIS) sensor, onboard NASA's Terra and Aqua satellites, were analyzed and processed for the estimation of the shortwave surface albedo over Europe, Northern Africa and the Middle East, at 1 km × 1 km spatial resolution and on an 8–day average basis, for the period 2001–2012. The surface albedo was computed as a linear combination of black-sky and white-sky albedos. This methodology allows the computation of surface albedo for different values of AOT and solar zenith angle (SZA). MODIS Level 3 AOT data were used in the computations, while the surface albedo was calculated as an average of albedo values, using different SZAs on a pixel basis. The final albedo product was analyzed in terms of spatial and seasonal characteristics, and inter– annual trends, during the period examined. A strong dependency of the albedo on land cover type was found, as it was expected. The results also revealed substantial spatiotemporal variability of the surface albedo in the area examined, highlighting the great potential of satellite remote sensing in supporting climate change related studies, at both local and regional scales.

Keywords:
Albedo (alchemy) Solar zenith angle Moderate-resolution imaging spectroradiometer Environmental science Remote sensing Zenith Satellite Shortwave Cloud albedo Atmosphere (unit) Atmospheric correction Atmospheric sciences Meteorology Climatology Radiative transfer Geography Cloud cover Geology Computer science Physics

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Citation History

Topics

Atmospheric aerosols and clouds
Physical Sciences →  Environmental Science →  Global and Planetary Change
Remote Sensing in Agriculture
Physical Sciences →  Environmental Science →  Ecology
Urban Heat Island Mitigation
Physical Sciences →  Environmental Science →  Environmental Engineering

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