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FY-2H大气可降水产品在“一带一路”区域的检验与应用
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作者 马博源 唐世浩 胡菊旸 《气象》 CSCD 北大核心 2022年第5期595-604,共10页
风云二号H星(FY-2H)于2018年6月5日成功发射且运行稳定,其上搭载的扫描辐射计(stretched visible and infrared spin scan radiometer,VISSR-2)能够提供高时空分辨率的大气可降水(total precipitable water,TPW)产品。FY-2H VISSR TPW... 风云二号H星(FY-2H)于2018年6月5日成功发射且运行稳定,其上搭载的扫描辐射计(stretched visible and infrared spin scan radiometer,VISSR-2)能够提供高时空分辨率的大气可降水(total precipitable water,TPW)产品。FY-2H VISSR TPW产品在分裂窗算法的基础上,增加了6.9μm通道的方法进行反演。利用2019年无线电探空仪数据集,从产品精度和稳定性两个方面评价了FY-2H TPW产品质量。与2019年1、4、7、10月每月前7天的全球探空数据对比,FY-2H TPW均方根误差为4.92 mm,相关系数达到0.96;相对误差在20%以内,并且白天与夜晚时段数据精度均较高。计算2019年全年FY-2H TPW产品相对探空数据的月均方根误差的标准差是0.68 mm,说明FY-2H TPW产品在检验期内较为稳定。分析合成月平均大气可降水产品,FY-2H TPW能正确反映“一带一路”区域大气可降水的分布情况。综合上述结果FY-2H VISSR TPW产品精度较高且质量稳定,具备投入“一带一路”区域的应用能力。 展开更多
关键词 fy-2h/vissr 大气可降水 探空 “一带一路” 服务应用
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An Operational Precipitable Water Vapor Retrieval Algorithm for Fengyun-2F/VISSR Using a Modified Three-Band Physical Split-Window Method 被引量:3
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作者 Juyang HU Shihao TANG +1 位作者 Hailei LIU Min MIN 《Journal of Meteorological Research》 SCIE CSCD 2019年第2期276-288,共13页
The Visible and Infrared Spin-Scan Radiometer(VISSR) onboard the Fengyun-2(FY-2) satellite can provide valuable thermal infrared observations to help create a precipitable water vapor(PWV) product with high spatial an... The Visible and Infrared Spin-Scan Radiometer(VISSR) onboard the Fengyun-2(FY-2) satellite can provide valuable thermal infrared observations to help create a precipitable water vapor(PWV) product with high spatial and temporal resolutions. The current FY-2/VISSR PWV product in operation is produced by using a traditional two-band physical split-window(PSW) method, which produces low quality results under dry atmospheric conditions. Based on the sensitivity characteristics of FY-2 F/VISSR water vapor channel and two split-window channels to atmospheric water vapor, this study developed a new, robust operational PWV retrieval algorithm for FY-2 F to improve the operational precision of the current PWV product. The algorithm uses a modified three-band PSW method, which adds a scale for the water vapor channel in the improved three-band PSW method. Integrated PWV products from the radiosonde data in 2016 are used here to validate the precision of the PWV retrieved by the modified three-band and traditional two-band PSW methods. The mean bias, root mean square error(RMSE), and correlation coefficient of the PWV retrieved by the modified three-band PSW method are 0.28 mm, 4.53 mm, and 0.969, respectively. The accuracy is much better than the PWV retrieved by the two-band method, whose mean bias, RMSE, and correlation coefficient are 12.67 mm, 29.35 mm, and 0.23. Especially, in mid-or high-latitude regions, the RMSE of the PWV is improved from 10 to 2 mm by changing the inversion in the two-band method to the modified three-band PSW method. Furthermore, the modified three-band PSW results show a better consistency with the radiosonde PWV at any zonal belt and season than the two-band PSW results. This new algorithm could significantly improve the quality of the current FY-2 F/VISSR PWV product, especially at sites where the actual PWV are lower than 15 mm. 展开更多
关键词 PhYSICAL split-window (PSW) METhOD precipitable water vapor (PWV) fy-2F/vissr thermal infrared
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