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A New Method to Estimate Reference Crop Evapotranspiration from Geostationary Satellite Imagery: Practical Considerations

机译:从静止卫星图像估算参考作物蒸散量的新方法:实际考虑

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Reference crop evapotranspiration (ETo) plays a role in irrigation advisory being of crucial importance for water managers dealing with scarce water resources. Following the ETo definition, it can be shown that total solar radiation is the main driver, allowing ETo estimates from satellite observations. As such, the EUMETSAT LSA-SAF operationally provides ETo primarily derived from the European geostationary satellite MSG. ETo estimations following the original FAO report require several meteorological observations gathered over actual well-watered grass. Here we will consider the impact of two effects on ETo using the LSA-SAF and FAO methodologies: (i) local advection, related to the impact of advection of surrounding warm dry air onto the reference non-water stressed surface; and (ii) the so-called surface aridity error, which occurs when calculating ETo according to FAO, but with input data not collected over well-watered grass. The LSA-SAF ETo is not sensitive to any of these effects. However, it is shown that local advection may increase evapotranspiration over a limited field by up to 30%, while ignoring aridity effects leads to a great overestimation. The practical application of satellite estimates of ETo provided by the LSA-SAF are discussed here, and, furthermore, water managers are encouraged to consider its advantages and ways for improvement.
机译:参考作物的蒸发蒸腾量(ETo)在灌溉咨询中起着重要的作用,对于处理水资源匮乏的水管理者而言至关重要。遵循ETo的定义,可以证明总的太阳辐射是主要驱动因素,从而可以根据卫星观测值进行ETo估算。这样,EUMETSAT LSA-SAF可操作地提供主要来自欧洲对地静止卫星MSG的ETo。根据粮农组织原始报告进行的ETo估算需要在实际浇水良好的草地上收集一些气象观测资料。在这里,我们将考虑使用LSA-SAF和FAO方法论对ETo的两种影响:(i)局部对流,与周围温暖的干燥空气对流到参考无水应力表面上的影响有关; (ii)所谓的表面干旱误差,这是在根据粮农组织计算ETo时发生的,但输入数据不是在灌溉良好的草上收集的。 LSA-SAF ETo对这些影响均不敏感。但是,研究表明,局部对流可能会使有限区域的蒸散量增加多达30%,而忽略干旱影响会导致高估。本文讨论了由LSA-SAF提供的ETo卫星估算的实际应用,此外,鼓励水管理人员考虑其优势和改进方法。

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