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Evapotranspiration monitoring in a vineyard using satellite-based thermal remote sensing

机译:使用基于卫星的热遥感的葡萄园蒸发监测

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A two-source energy balance model that separates surface fluxes of the soil and canopy was applied to a drip-irrigated vineyard in central Spain, using a series of nine Landsat-5 images acquired during the summer of 2007. The model partitions the available energy, using surface radiometric temperatures to constrain the sensible heat flux, and computing ET as a residual of the energy balance. Flux estimations from the model are compared with half-hourly and daily values obtained by an eddy covariance flux tower installed on the site during the experiment. The performance of the two-source model to estimate ET under the low vegetation cover and semiarid conditions of the experiment, with RMSD between observed and model data equal to 49 W m~(-2) for half-hourly estimations and RMSD=0.5 mm day~(-1) at daily scale, is regarded as acceptable for irrigation management purposes. Model results in the separation of the beneficial (transpiration) and non-beneficial (evaporation from the soil) fractions, which is key information for the quest to improve water productivity, are also reported. However, the lack of measures of these components makes it difficult to draw conclusions about the final use of the water.
机译:一个双源能量平衡模型,将土壤和冠层分开的地表势倍,在西班牙中部的滴灌葡萄园应用于2007年夏天获得的一系列九个Landsat-5图像。模型分区可用的能量,使用表面辐射温度来限制可显热通量,并计算ET作为能量平衡的残余。将模型的磁通估计与在实验期间在部位上安装的涡旋协方差磁带塔获得的半小时和日常值进行比较。双源模型的性能在实验的低植被覆盖和半干旱条件下估算ET,观察到的和模型数据之间的RMSD等于49 W m〜(-2),用于半小时估计,RMSD = 0.5mm日常规模的日〜(-1)被认为是可接受的灌溉管理目的。还报道了模型分离有益(蒸腾)和非有益的(蒸发)分离(从土壤中蒸发)部分,这是寻求提高水生产率的关键信息。然而,这些组件的缺乏措施使得难以得出关于水的最终使用的结论。

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