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生态学杂志 ›› 2021, Vol. 40 ›› Issue (1): 292-300.doi: : 10.13292/j.1000-4890.202101.021

• 技术与方法 • 上一篇    

FY-4A太阳短波辐射产品在黑河流域的精度分析

陈蔺鸿,张彦丽*,宋雨钰   

  1. (西北师范大学地理与环境科学学院, 兰州 730070)
  • 出版日期:2021-01-10 发布日期:2021-06-10

Accuracy analysis of shortwave solar radiation products derived from FY-4A in the Heihe River Basin.

CHEN Lin-hong, ZHANG Yan-li*, SONG Yu-yu#br#   

  1. (College of Geography and Environmental Science, Northwest Normal University, Lanzhou 730070, China).
  • Online:2021-01-10 Published:2021-06-10

摘要: FY-4A是我国自主研发的新一代静止气象卫星,其太阳短波辐射(downward surface shortwave radiation,DSSR)产品在水文、生态研究和能源开发利用等方面具有广阔的应用前景。基于祁连山综合观测网2018年4—12月的12个辐射站点观测数据,对黑河流域FY-4A DSSR产品进行精度验证和误差分析。结果表明:FY-4A DSSR产品与地面测量值具有较好的一致性。在晴空条件下,FY-4A DSSR与地面辐射站点观测数据的相关性(相关系数r=0.95)较高,平均偏差(MBE)为11.74 W·m-2,均方根误差(RMSE)为59.43 W·m-2;在全天空条件下,r为0.82,MBE和RMSE分别为75.99和163.80 W·m-2,精度比晴空条件下低;FY-4A DSSR产品在不同的月份存在一致高估现象。此外,随高程升高,FY-4A DSSR与地面测量值的相关性总体降低。本文对FY-4A DSSR产品精度进行了定量分析,为了解其质量及其应用提供科学参考。

关键词: DSSR, 精度验证, 空间尺度, 云检测

Abstract: FY-4A is a new-generation geostationary meteorological satellite independently developed by China. The Downward Surface Shortwave Radiation (DSSR) products of FY-4A have broad application prospects in hydrology, ecological research, and energy development and utilization. In this study, the accuracy verification and error analysis of FY-4A DSSR products in Heihe River Basin were carried out based on the ground measurements of 12 radiation sites in the Qilian Mountains integrated observatory network from April to December 2018. The verification results showed that the FY-4A DSSR products fitted well with the field observations. Under clear-sky conditions, the FY-4A DSSR had a strong correlation with the observation data of the ground meteorological stations (r=0.95), with a mean bias error (MBE) of 11.74 W·m-2 and a root mean square error (RMSE) of 59.43 W·m-2. Under all-sky conditions, the accuracy was lower than that under clear sky conditions (r=0.82, MBE=75.99 W·m-2, and RMSE=163.80 W·m-2). The FY-4A products overestimated DSSR in different months. The correlation between FY-4A DSSR and measurements generally decreased with increasing elevation. With a quantitative analysis of the accuracy of FY-4A DSSR products, our results provided a scientific reference for understanding their quality and application.

Key words: DSSR, accuracy validation, spatial scale, cloud mask.