Arid
DOI10.1080/01431160802549393
Radiometric surface temperature calibration effects on satellite based evapotranspiration estimation
Chavez, J. L.; Gowda, P. H.; Howell, T. A.; Copeland, K. S.
通讯作者Chavez, J. L.
来源期刊INTERNATIONAL JOURNAL OF REMOTE SENSING
ISSN0143-1161
出版年2009
卷号30期号:9页码:2337-2354
英文摘要

Agriculture on the Texas High Plains (THP) uses approximately 89% of groundwater withdrawals from the Ogallala Aquifer, leading to steady decline in water table levels. Therefore, efficient water management is essential for sustaining agricultural production in the THP. Accurate evapotranspiration (ET) maps provide critical information on actual spatio-temporal crop water use. METRIC (Mapping Evapotranspiration at High Resolution using Internalized Calibration) is a remote sensing based energy balance method that uses radiometric surface temperature (T(s)) for mapping ET. However, T(s) calibration effects on satellite based ET estimation are less known. Further, METRIC has never been applied for the advective conditions of the semi-arid THP. In this study, METRIC was applied and predicted ET was compared with measured values from five monolithic weighing lysimeters at the USDA-ARS Conservation and Production Research Laboratory in Bushland, Texas, USA. Three different levels of calibration were applied on a Landsat 5 Thematic Mapper’s thermal image acquired on 23 July 2006 to derive T(s). Application of METRIC on a MODTRAN calibrated image improved the accuracy of distributed ET prediction. In addition, ET estimates were further improved when a THP-specific model was used for estimating leaf area index. Results indicated that METRIC performed well with ET mean bias error +/- root mean square error of 0.4 +/- 0.7 mm d(-1).


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000266917400011
WOS关键词FLUXES
WOS类目Remote Sensing ; Imaging Science & Photographic Technology
WOS研究方向Remote Sensing ; Imaging Science & Photographic Technology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/161106
作者单位USDA ARS, Conservat & Prod Res Lab, Bushland, TX 79012 USA
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GB/T 7714
Chavez, J. L.,Gowda, P. H.,Howell, T. A.,et al. Radiometric surface temperature calibration effects on satellite based evapotranspiration estimation[J],2009,30(9):2337-2354.
APA Chavez, J. L.,Gowda, P. H.,Howell, T. A.,&Copeland, K. S..(2009).Radiometric surface temperature calibration effects on satellite based evapotranspiration estimation.INTERNATIONAL JOURNAL OF REMOTE SENSING,30(9),2337-2354.
MLA Chavez, J. L.,et al."Radiometric surface temperature calibration effects on satellite based evapotranspiration estimation".INTERNATIONAL JOURNAL OF REMOTE SENSING 30.9(2009):2337-2354.
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