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A novel method to convert daytime evapotranspiration into daily evapotranspiration based on variable canopy resistance

机译:基于可变冠层阻力的将日蒸散量转化为日蒸散量的新方法

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method to convert daytime evapotranspiration (ET) into daily ET based on variable canopy resistance was investigated in this paper. The study was carried out for maize and canola crops grown in Coleambally Irrigation Area which is located in Murray Darling Basin of Australia. Variable canopy resistance was simulated on the basis of Todorovic method. This study has shown that the method performed well to scale daily ET from daytime ET measurements for both crops. In the case of the maize crop, the coefficient of determination (R ~2) was 0.979 and the index of agreement (d) was 0.981. In the case of the canola crop, the coefficient of determination (R ~2) was 0.936 and the index of agreement (d) was 0.960. Future work will focus on the study of this method to scale daily ET map from satellite-derived daytime ET map.
机译:本文研究了基于变化的冠层阻力将日蒸散量转换为日蒸散量的方法。这项研究是针对位于澳大利亚墨累达令盆地的Coleambally灌溉区种植的玉米和油菜籽作物的。在Todorovic方法的基础上模拟了可变的冠层阻力。这项研究表明,从两种作物的日间ET测量值来看,该方法在按日ET缩放方面效果很好。对于玉米作物,测定系数(R〜2)为0.979,一致性指数(d)为0.981。对于双低油菜籽作物,测定系数(R〜2)为0.936,一致性指数(d)为0.960。未来的工作将集中在这种方法的研究上,以从卫星衍生的白天ET图缩放每日ET图。

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