中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Multiscale remote-sensing retrieval in the evapotranspiration of Haloxylon ammodendron in the Gurbantunggut desert, China

文献类型:期刊论文

作者Cao, XiaoMing(曹晓明) ; Wang, JL ; Chen, X ; Gao, ZQ ; Yang, F ; Shi, JK
刊名ENVIRONMENTAL EARTH SCIENCES
出版日期2013
卷号69期号:5页码:1549-1558
关键词Evapotranspiration Scale Remote sensing Haloxylon ammodendron The arid areas
通讯作者Wang, JL
英文摘要Transpiration, an essential component of surface evapotranspiration, is particularly important in the research of surface evapotranspiration in arid areas. The paper explores the spectral information of the arid vegetal evapotranspiration from a semi-empirical perspective by the measured data and the up-scaling method. The paper inverted the transpiration of Haloxylon ammodendron at the canopy, pixel and regional scales in the southern edge of the Gurbantunggut desert in Xinjiang, China. The results are as follows: at the canopy scale, the optimal exponential model of the sap flow rate based on the hyperspectrum is y = 0.0015e(3.8922x) , R (2) = 0.806. At the pixel scale, there was a good linear relationship between the sap flow and the SR index, with a relationship of y = -1197.38x (3) + 1048.43x (2) - 305.47x + 455.15, R (2) = 0.845. At the regional scale, based on the optimal exponential model and the EO-1 Hyperion remote-sensing data, the transpiration of the study area was inverted. Comparing the results of the SEBAL and SEBS models, the errors of the simulation results were 7.78 and 8.80 %. The paper made full use of the knowledge flow at different scales, bridging the scale difference in canopy and remote-sensing images to avoid the information bottleneck in the up-scaling. However, there are many constraints in the data acquirement, the efficiency of the models, the endmembers determination, the temporal-spatial up-scaling, and the accuracy assessment, which would be improved in future studies.
收录类别SCI
资助信息Public Welfare Special Program, Ministry of Environmental Protection of the People's Republic of China 201109075;Research Project of Public Service Sectors from the Ministry of Environment Protection in China 201209030-3;land use spatial and temporal changes and its environmental effects in China;Ministry of Science 2011FY110400;National Natural Science Foundation of China 41171334 41071278
公开日期2013-10-25
源URL[http://ir.igsnrr.ac.cn/handle/311030/27977]  
专题地理科学与资源研究所_研究生部
推荐引用方式
GB/T 7714
Cao, XiaoMing,Wang, JL,Chen, X,et al. Multiscale remote-sensing retrieval in the evapotranspiration of Haloxylon ammodendron in the Gurbantunggut desert, China[J]. ENVIRONMENTAL EARTH SCIENCES,2013,69(5):1549-1558.
APA Cao, XiaoMing,Wang, JL,Chen, X,Gao, ZQ,Yang, F,&Shi, JK.(2013).Multiscale remote-sensing retrieval in the evapotranspiration of Haloxylon ammodendron in the Gurbantunggut desert, China.ENVIRONMENTAL EARTH SCIENCES,69(5),1549-1558.
MLA Cao, XiaoMing,et al."Multiscale remote-sensing retrieval in the evapotranspiration of Haloxylon ammodendron in the Gurbantunggut desert, China".ENVIRONMENTAL EARTH SCIENCES 69.5(2013):1549-1558.

入库方式: OAI收割

来源:地理科学与资源研究所

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