Title
Shortwave Radiative Transfer Modeling At Large Scale For Partial Cloudy Conditions
Abstract
Clouds are the strongest modulator of the solar radiation absorbed by the earth-atmosphere system. In this study, a regional cloud fraction (RCF) is involved to modify the classic one-dimensional radiative transfer model, in order to study the effect of inner-pixel broken clouds on the radiation field at large scale. A global sensitivity analysis (GSA) is performed to quantitatively understand the effect of 11 parameters on each surface shortwave radiation component. The GSA results show that three most influential parameters for the modified model are RCF, land surface albedo and solar zenith angle. Three less important parameters are ground altitude, visibility and cloud extinction coefficient which is the case only for the situation of optically thin clouds. The other five factors can be considered as not important. These findings will enhance our knowledge on how to accurately model the surface shortwave radiation fluxes at large scale for partial cloudy conditions.
Year
Venue
Keywords
2015
2015 IEEE INTERNATIONAL GEOSCIENCE AND REMOTE SENSING SYMPOSIUM (IGARSS)
MODTRAN, regional cloud fraction, global sensitivity analysis
Field
DocType
ISSN
Meteorology,Cloud albedo,Shortwave radiation,Computer science,Remote sensing,Shortwave,Albedo,Solar zenith angle,Atmospheric radiative transfer codes,Atmospheric sciences,Cloud fraction,Radiative transfer
Conference
2153-6996
Citations 
PageRank 
References 
1
0.40
0
Authors
3
Name
Order
Citations
PageRank
Ling Chen153.99
Guangjian Yan214038.69
Tianxing Wang32014.16