Surface Downward Longwave Radiation Retrieval Algorithm for GEO-KOMPSAT-2A/AMI

被引:0
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作者
Seo-Hee Ahn
Kyu-Tae Lee
Se-Hun Rim
Il-Sung Zo
Bu-Yo Kim
机构
[1] Gangneung-Wonju National University,Department of Atmospheric and Environmental Sciences
[2] Gangneung-Wonju National University,Research Institute for Radiation
[3] Korea Polar Research Institute,Satellite
[4] Gangneung-Wonju National University,Division of Polar Climate Sciences
关键词
surface downward longwave radiation (DLR); Clouds and the Earth’s Radiant Energy System (CERES); European Centre for Medium-Range Weather Forecasts (ECMWF); cloud liquid water content (LWC); cloud base temperature;
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摘要
This study contributes to the development of an algorithm to retrieve the Earth’s surface downward longwave radiation (DLR) for 2nd Geostationary Earth Orbit KOrea Multi-Purpose SATellite (GEO-KOMPSAT-2A; GK-2A)/Advanced Meteorological Imager (AMI). Regarding simulation data for algorithm development, we referred to Clouds and the Earth’s Radiant Energy System (CERES), and the European Centre for Medium-Range Weather Forecasts (ECMWF) ERA-interim reanalysis data. The clear sky DLR calculations were in good agreement with the Gangneung-Wonju National University (GWNU) Line-By-Line (LBL) model. Compared with CERES data, the Root Mean Square Error (RMSE) was 10.14Wm−2. In the case of cloudy sky DLR, we estimated the cloud base temperature empirically by utilizing cloud liquid water content (LWC) according to the cloud type. As a result, the correlation coefficients with CERES all sky DLRs were greater than 0.99. However, the RMSE between calculated DLR and CERES data was about 16.67Wm−2, due to ice clouds and problems of mismatched spatial and temporal resolutions for input data. This error may be reduced when GK-2A is launched and its products can be used as input data. Accordingly, further study is needed to improve the accuracy of DLR calculation by using high-resolution input data. In addition, when compared with BSRN surface-based observational data and retrieved DLR for all sky, the correlation coefficient was 0.86 and the RMSE was 31.55 Wm−2, which indicates relatively high accuracy. It is expected that increasing the number of experimental Cases will reduce the error.
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页码:237 / 251
页数:14
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