DocumentCode
298800
Title
Estimating net solar radiation balance from satellite data for the Southern Super-Site of the HAPEX SAHEL Experiment
Author
Wollenweber, Gabriele C K
Author_Institution
Dept. of Meteorol., Reading Univ., UK
Volume
1
fYear
34881
fDate
10-14 Jul1995
Firstpage
530
Abstract
Reliable estimates of net solar radiation over large areas with reasonable resolution in space and time require the inclusion of satellite data. METEOSAT measurements provide information every half an hour, which can be used as a basic element for estimating net solar fluxes at the surface. Additional data are needed both for relating top of the atmosphere fluxes to surface solar net fluxes and for converting measured METEOSAT VIS count values into reflected radiances. Net solar fluxes are calculated with an algorithm, that depends on solar zenith angle, which can be calculated directly as function of geographic position and time and on cloud type and the amount of precipitable water. NOAA data are added to this algorithm to test their applicability as input data and to validate them with additional measurements from the HAPEX SAHEL Experiment
Keywords
atmospheric radiation; atmospheric techniques; geophysical techniques; meteorology; remote sensing; sunlight; HAPEX SAHEL experiment; METEOSAT; North Africa; Sahara; Southern Super-Site; algorithm; atmosphere meteorology; desert region; land surface; measurement technique; net solar radiation balance; radiation budget; remote sensing; satellite method; solar flux; thermal radiation; visible infrared IR; Atmospheric measurements; Atmospheric modeling; Clouds; Land surface; Satellites; Sea measurements; Sea surface; Sensor phenomena and characterization; Solar radiation; Wavelength measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
Geoscience and Remote Sensing Symposium, 1995. IGARSS '95. 'Quantitative Remote Sensing for Science and Applications', International
Conference_Location
Firenze
Print_ISBN
0-7803-2567-2
Type
conf
DOI
10.1109/IGARSS.1995.520328
Filename
520328
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