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Performance of Twelve Mass Transfer Based Reference Evapotranspiration Models under Humid Climate

机译:湿气候下基于十二种传质的参考蒸散模型的性能

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摘要

Reference evapotranspiration is very important parameter in the hydrological, agricultural and environmental studies and is accurately estimated by the FAO Penman-Monteith equation (FAO-PM) under different climatic conditions. However, due to data requirement of the FAO-PM equation, there is a need to investigate the applicability of alternative ETo equations under limited data. The objectives of this study were to evaluate twelve mass transfer based reference evapotranspiration equations and determine the impact of ETo equation on long term water management sustainability in Tanzania and Kenya. The results showed that the Albrecht, Brockamp-Wenner, Dalto, Meyer, Rohwer and Oudin ETo equations systematically overestimated the daily ETo at all weather stations with relative errors that varied from 34% to 94% relative to the FAO-PM ETo estimates. The Penman, Mahringer, Trabert, and the Romanenko equations performed best across Tanzania and the South Western Kenya with root mean squared errors ranging from 0.98 to 1.48 mm/day, which are relatively high and mean bias error (MBE) varying from -0.33 to 0.02 mm/day and the absolute mean error (AME) from 0.79 to 1.16 mm/day. For sustainable water management, the Trabert equation could be adopted at Songea, the Mahringer equation at Tabora, the Dalton and/or the Rohwer equations at Eldoret, the Romanenko equation at Dodoma, Songea and Eldoret. However, regional calibration of the most performing equation could improve water management at regional level.
机译:参考蒸散量在水文,农业和环境研究中是非常重要的参数,并通过粮农组织Penman-Monteith方程(FAO-PM)在不同气候条件下准确估算。但是,由于FAO-PM方程需要数据,因此有必要研究有限数据下替代ETo方程的适用性。这项研究的目的是评估基于传质的十二个参考蒸散方程,并确定ETo方程对坦桑尼亚和肯尼亚长期水资源管理可持续性的影响。结果表明,Albrecht,Brockamp-Wenner,Dalto,Meyer,Rohwer和Oudin ETo方程系统地高估了所有气象站的每日ETo,相对误差相对于FAO-PM ETo估计值从34%到94%不等。 Penman,Mahringer,Trabert和Romanenko方程在坦桑尼亚和肯尼亚西南部表现最佳,均方根误差在0.98至1.48 mm /天之间,相对较高,平均偏差误差(MBE)在-0.33至0.02毫米/天,绝对平均误差(AME)从0.79到1.16毫米/天。为了实现可持续的水资源管理,可以在Songea上采用Trabert方程,在Tabora上采用Mahringer方程,在Eldoret上采用Dalton和/或Rohwer方程,在Dodoma,Songea和Eldoret上采用Romanenko方程。但是,对性能最佳的方程式进行区域校准可以改善区域一级的水资源管理。

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  • 来源
    《Journal of water resource and protection》 |2017年第12期|1347-1363|共17页
  • 作者单位

    Department of Plant and Environmental Sciences, New Mexico State University, Agricultural Science Center, Farmington, USA;

    ADA Consulting Africa, Lome, Togo;

    Research Scientist, Institut Senegalais de Recherches Agricoles, Centre de Saint Louis, Saint Louis, Senegal;

    Department of Agricultural and Biosystems Engineering, Makerere University, Kampala, Uganda;

    Department of Biological Systems Engineering, University of Nebraska-Lincoln, Chase Hall, Lincoln, USA;

    Department of Biological Systems Engineering, University of Nebraska-Lincoln, Chase Hall, Lincoln, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reference Evapotranspiration; Mass Transfer; Eastern Africa; Water;

    机译:参考蒸散量;传质;东非;水;

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