期刊文献+

旱区大气水汽含量遥感反演算法研究 被引量:3

Research on remote sensing retrieval of atmospheric water vapor content in arid region
原文传递
导出
摘要 针对旱区大气水汽含量难以获取,且精度不高的问题,该文利用Landsat8两个热红外波段,基于SWCVR算法构建旱区大气水汽含量反演模型。与气象站实测数据进行验证,其均方根误差为0.31 g/cm^2,绝对误差为0.25 g/cm^2;与MOD05水汽产品对比发现,两者水汽的平均值分别为2.63和2.37 g/cm^2,且空间分布基本一致,但空间分辨率和成像时间的不同,导致存在一定差异性。结果表明,针对Landsat8热红外遥感数据,30×30的窗口大小最优,既保留了中高空间分辨率的优点,又获得了具有实用价值的精度;基于SWCVR算法的大气水汽含量反演方法在风沙滩地区具有较好的应用。 Aiming at the problem that it is difficult to obtain atmospheric water vapor content in arid area and the accuracy is not high,this paper uses two thermal infrared bands of Landsat8 to construct the retrieval model of atmospheric water vapor content in arid area based on SWCVR algorithm. Compared with the measured data of meteorological station,and the root mean square error is 0.31 g/cm^2 and the absolute error is 0.25 g/cm^2. Compared with MOD05 water vapor products,it is found that the average values of water vapor are 2.63 and 2.37 g/m^2 respectively,and the spatial distribution is basically the same,but the spatial resolution and imaging time are different. The results show that the window size of 30×30 is the best for Landsat8 thermal infrared remote sensing data,which not only retains the advantages of medium and high spatial resolution,but also obtains the accuracy of practical value. The retrieval method of atmospheric water vapor content based on SWCVR algorithm has a good application in wind beach area.
作者 杨亮彦 孔金玲 王雅婷 李健锋 张文博 YANG Liangyan;KONG Jinling;WANG Yating;LI Jianfeng;ZHANG Wenbo(School of Earth Science and Resources,Chang’an University,Xi’an 710054,China;School of Geological Engineering and Geomatics,Chang’an University,Xi’an 710054,China)
出处 《测绘科学》 CSCD 北大核心 2020年第5期95-100,共6页 Science of Surveying and Mapping
基金 国家自然科学基金项目(41272246)。
关键词 大气水汽含量 Landsat8 SWCVR 旱区 atmospheric water vapor Landsat 8 SWCVR Arid Region
  • 相关文献

参考文献6

二级参考文献67

  • 1王伟民,孙晓敏,张仁华,唐新斋,朱治林.地物反射光谱对MODIS近红外波段水汽反演影响的模拟分析[J].遥感学报,2005,9(1):8-15. 被引量:26
  • 2毛克彪,覃志豪.用MODIS影像反演环渤海地区的大气水汽含量[J].遥感信息,2004,26(4):47-49. 被引量:37
  • 3徐涵秋.环厦门海域水色变化的多光谱多时相遥感分析[J].环境科学学报,2006,26(7):1209-1218. 被引量:14
  • 4孟宪红,吕世华,张堂堂.MODIS近红外水汽产品的检验、改进及初步应用—以黑河流域金塔绿洲为例[J].红外与毫米波学报,2007,26(2):107-111. 被引量:22
  • 5Qin Z, Karnieli A, Berliner P.A mono-window algorithm for retrieving land surface temperature from Landsat TM data and its application to the Israel-Egypt border region[J]. International Journal of Remote Sensing, 2001,22(18): 3719-3746.
  • 6Schneider K, Mauser W.Processing and accuracy of Landsat Thematic Mapper data for lake surface temperature measurement[J]. International Journal of Remote Sensing,1996,17: 2027-2041.
  • 7Sugita M, Brutsaert W.Comparison of land surface temperatures derived from satellite observations with ground truth during FIFE[J]. International Journal of Remote Sensing,1993,14:1659-1676.
  • 8Sobrino J A, Coll C, Caselles V.A tmospheric correction for land surface temperature using NOAA-11 AVHRR channels 4 and 5[J]. Remote Sensing of Environment, 1991,38: 19-34.
  • 9Qin Z, Dall'Olmo G, Karnieli A, et al.Derivation of split window algorithm and its sensitivity analysis for retrieving land surface temperature from NOAA-advanced very high resolution radiometer data[J].Journal of Geophysical Research, 2001,106(D19): 22655-22670.
  • 10Franca G B, Cracknell A P. Retrieval of land and sea surface temperature using NOAA-11 AVHRR data in northeastern Brazil[J].International Journal of Remote Sensing, 1994,15:1695-1712.

共引文献601

同被引文献42

引证文献3

二级引证文献4

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部