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Using the Priestley-Taylor expression for estimating actual evapotranspiration from satellite Landsat ETM + data

机译:使用Priestley-Taylor表达式从Landsat ETM卫星+数据估算实际蒸散量

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The quantification of evapotranspiration from irrigated areas is important for agriculture water management, especially in arid and semi-arid regions where water deficiency is becoming a major constraint in economic welfare and sustainable development. Conventional methods that use point measurements to estimate evapotranspiration are representative only of local areas and cannot be extended to large areas because of landscape heterogeneity. Remote sensing-based energy balance models are presently most suited for estimating evapotranspiration at both field and regional scales. In this study, we aim to develop a methodology based on the triangle concept, allowing estimation of evapotranspiration through the classical equation of Priestley and Taylor (1972) where the proportional coefficient a in this equation is ranged using a linear interpolation between surface temperature and Normalized Difference Vegetation Index (NDVI) values. Preliminary results using remotely sensed data sets from Landsat ETM+ over the Habra Plains in west Algeria are in good agreement with ground measurements. The proposed approach appears to be more reliable and easily applicable for operational estimation of evapotranspiration over large areas.
机译:灌溉地区的蒸散量对农业用水管理非常重要,特别是在缺水正成为经济福利和可持续发展的主要制约因素的干旱和半干旱地区。使用点测量来估计蒸散量的常规方法仅代表局部区域,并且由于景观异质性而不能扩展到大区域。目前,基于遥感的能量平​​衡模型最适合估算田间和区域尺度的蒸散量。在这项研究中,我们旨在开发一种基于三角形概念的方法,允许通过Priestley和Taylor(1972)的经典方程式估算蒸散量,该方程式中的比例系数a使用地表温度和归一化之间的线性插值来确定植被差异指数(NDVI)值。使用来自阿尔及利亚西部哈布拉平原上Landsat ETM +的遥感数据集获得的初步结果与地面测量结果非常吻合。所提出的方法似乎更可靠,并且容易适用于大面积蒸发蒸腾量的业务估算。

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