A new benchmark for surface radiation products over the East Asia-Pacific region retrieved from the Himawari-8/AHI next-generation geostationary satellite

Author:

Letu Husi12,Nakajima Takashi Y.2,Wang Tianxing3,Shang Huazhe1,Ma Run4,Yang Kun5,Baran Anthony J.67,Riedi Jerome8,Ishimoto Hiroshi9,Yoshida Mayumi10,Shi Chong111,Khatri Pradeep12,Du Yihan3,Chen Liangfu1,Shi Jiancheng13

Affiliation:

1. 1 State Key Laboratory of Remote Sensing Science, The Aerospace Information Research Institute, Chinese Academy of Sciences (CAS), Datun Road No. 20, Beijing 100101, China

2. 2 Research and Information Center (TRIC), Tokai University, 4-1-1 Kitakaname Hiratsuka, Kanagawa 259-1292, Japan

3. 3 School of Geospatial Engineering and Science, Sun Yat-Sen University, Zhuhai, Guangdong 519082, China

4. 4 University of Chinese Academy of Sciences, Beijing 100049, China

5. 5 Department of Earth Science System, Tsinghua University, Beijing 10084, China

6. 6 Met Office, Fitzroy Road, Exeter EX1 3PB, UK

7. 7 School of Physics, Astronomy and Mathematics, University of Hertfordshire, Hatfield, Hertfordshire AL10 9AB, UK

8. 8 Laboratoire d’Optique Atmosphérique, Université de Lille–Sciences et Technologies, 59655 Villeneuve d’Ascq, France

9. 9 Meteorological Research Institute, Japan Meteorological Agency (JMA), Nagamine 1-1, Tsukuba 305-0052, Japan

10. 10 Earth Observation Research Center (EORC), Japan Aerospace Exploration Agency (JAXA), 2-1-1 Sengen Tsukuba-shi, Ibaraki 305-8505, Japan

11. 11 Center for Global Environmental Research, National Institute for Environmental Studies, 16-2 onogawa, Tsukuba, 305-8506?Japan

12. 12 Center for Atmospheric and Oceanic Studies, Tohoku University, Sendai 980-8578, Japan

13. 13 National Space Science Center, Chinese Academy of Sciences, Beijing 100190, China

Abstract

AbstractSurface downward radiation (SDR), including shortwave downward radiation (SWDR) and longwave downward radiation (LWDR), is of great importance to energy and climate studies. Considering the lack of reliable SDR data with a high spatiotemporal resolution in the East Asia-Pacific (EAP) region, we derived SWDR and LWDR at 10-min and 0.05° resolutions for this region from 2016-2020 based on the next-generation geostationary satellite Himawari-8 (H-8). The SDR product is unique in terms of its all-sky features, high accuracy and high resolution levels. The cloud effect is fully considered in the SDR product, and the influence of high aerosol loadings and topography on the SWDR are considered. Compared to benchmark products of the radiation, such as Clouds and the Earth’s Radiant Energy System (CERES) and the European Centre for Medium-Range Weather Forecasts (ECMWF) next-generation reanalysis (ERA5), and the Global Land Surface Satellite (GLASS), not only is the resolution of the new SDR product notably much higher but the product accuracy is also higher than that of those products. In particular, hourly and daily root mean square errors of the new SWDR are 104.9 and 31.5 Wm−2, respectively, which are much smaller than those of CERES (at 121.6 and 38.6 Wm−2, respectively), ERA5 (at 176.6 and 39.5 Wm−2, respectively) and GLASS (daily of 36.5 Wm−2). Meanwhile, RMSEs of hourly and daily values of the new LWDR are 19.6 and 14.4 Wm−2, respectively, which are comparable to that of CERES and ERA5, and even better over high altitude regions.

Publisher

American Meteorological Society

Subject

Atmospheric Science

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