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基于地表能量平衡的德克萨斯高平原蒸散量制图

Surface Energy Balance Based Evapotranspiration Mapping in the Texas High Plains.

作者信息

Gowda Prasanna H, Chávez José L, Howell Terry A, Marek Thomas H, New Leon L

机构信息

Conservation and Production Research Laboratory, Agricultural Research Service, U.S. Department of Agriculture, P.O. Drawer 10, Bushland, TX 79012, USA.

Texas AgriLife Research, Texas A&M System, Amarillo, TX 79106, USA.

出版信息

Sensors (Basel). 2008 Aug 28;8(8):5186-5201. doi: 10.3390/s8085186.

Abstract

Agriculture on the Texas High Plains (THP) uses approximately 89% of groundwater withdrawals from the Ogallala Aquifer. Consequently, groundwater levels are declining faster than the recharge rate. Therefore, efficient agricultural water use is essential for economic viability and sustainability of the THP. Accurate regional evapotranspiration (ET) maps would provide valuable information on actual crop water use. In this study, METRIC (Mapping Evapotranspiration at High Resolution using Internalized Calibration), a remote sensing based ET algorithm, was evaluated for mapping ET in the THP. Two Landsat 5 Thematic Mapper images acquired on 27 June (DOY 178) and 29 July (DOY 210) 2005 were used for this purpose. The performance of the ET model was evaluated by comparing the predicted daily ET with values derived from soil moisture budget at four commercial agricultural fields. Daily ET estimates resulted with a prediction error of 12.7±8.1% (mean bias error ± root mean square error) on DOY 178 and -4.7±9.4% on DOY 210 when compared with ET derived from measured soil moisture through the soil water balance. These results are good considering the prevailing advective conditions in the THP. METRIC have the potential to be used for mapping regional ET in the THP region. However, more evaluation is needed under different agroclimatological conditions.

摘要

德克萨斯高平原(THP)的农业用水约占奥加拉拉含水层地下水抽取量的89%。因此,地下水位下降速度快于补给速度。所以,高效的农业用水对THP的经济可行性和可持续性至关重要。准确的区域蒸散量(ET)地图将提供有关实际作物用水的宝贵信息。在本研究中,对基于遥感的ET算法METRIC(使用内部校准的高分辨率蒸散量制图)进行了评估,以绘制THP的ET地图。为此使用了2005年6月27日(一年中的第178天)和7月29日(一年中的第210天)获取的两幅陆地卫星5号专题制图仪图像。通过将预测的每日ET与四个商业化农业田地的土壤水分收支得出的值进行比较,评估了ET模型的性能。与通过土壤水平衡从实测土壤水分得出的ET相比,在第178天每日ET估计值的预测误差为12.7±8.1%(平均偏差误差±均方根误差),在第210天为-4.7±9.4%。考虑到THP普遍存在的平流条件,这些结果是不错的。METRIC有潜力用于绘制THP地区的区域ET图。然而,在不同的农业气候条件下还需要更多评估。

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