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Estimating reference evapotranspiration using remote sensing and empirical models in a region with limited ground data availability in Kenya.

机译:在肯尼亚地面数据可用性有限的地区,使用遥感和经验模型估算参考蒸散量。

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Evapotranspiration is an important component of the hydrological cycle and its accurate quantification is crucial for the design, operation and management of irrigation systems. However, the lack of meteorological data from ground stations is a clear barrier to the proper management of water resources in poor countries, increasing the risks of water scarcity and water conflicts. In the presented study, three temperature based ET models are evaluated in the Taita Hills, Kenya, which is a particularly important region from the environmental conservation point of view. The Hargreaves, the Thornthwaite and the Blaney-Criddle are the three tested methods, given that these are the most recommended approaches when only air temperature data are available. Land surface temperature data, retrieved from the MODIS/Terra sensor are evaluated as an alternative input for the models. One weather station with complete climate datasets is used to calibrate the selected model using the FAO-56 Penman-Monteith method as a reference. The results indicate that the Hargreaves model is the most appropriate for this particular study area, with an average RMSE of 0.47 mm d-1, and a correlation coefficient of 0.67. The MODIS LST product was satisfactorily incorporated into the Hargreaves model achieving results that are consistent with studies reported in the literature using air temperature data collected in ground stations.Digital Object Identifier http://dx.doi.org/10.1016/j.apgeog.2010.05.011
机译:蒸散量是水文循环的重要组成部分,其准确定量对灌溉系统的设计,运行和管理至关重要。但是,缺乏来自地面站的气象数据显然是对贫穷国家的水资源进行适当管理的明显障碍,这增加了缺水和水冲突的风险。在本研究中,对三种基于温度的ET模型在肯尼亚的Taita Hills进行了评估,从环境保护的角度来看,Tata Hills是一个特别重要的地区。 Hargreaves,Thornthwaite和Blaney-Criddle是三种经过测试的方法,因为只有空气温度数据可用时,这是最推荐的方法。从MODIS / Terra传感器获取的地表温度数据将作为模型的替代输入进行评估。使用一个具有完整气候数据集的气象站,以FAO-56 Penman-Monteith方法为参考来校准所选模型。结果表明,Hargreaves模型最适合该特定研究区域,平均RMSE为0.47 mm d -1 ,相关系数为0.67。将MODIS LST产品令人满意地整合到Hargreaves模型中,获得的结果与使用地面站收集的气温数据的文献报道的研究结果一致。Digital Object Identifier http://dx.doi.org/10.1016/j.apgeog。 2010.05.011

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