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Daily estimation of local evapotranspiration using energy and water balance approaches

机译:使用能量和水平衡方法每日估算当地的蒸散量

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摘要

Meteorological and environmental (i.e. soil water content) data measured from semiarid watersheds (Lucky Hills and Kendall) during the summer rainy and winter periods were used to study the interrelationships between variables, and to evaluate the effects of variables on the daily estimation of actual evapotranspiration (AET). The relationship between AET and potential evapotranspiration (PET) as a function of an environmental factor was the major consideration of this research. The relationship between AET and PET as a function of soil water content as suggested by Thornthwaite-Mather, Morton and Priestley-Taylor was studied to determine its applicability to the study area. Furthermore, multiple linear regression (MLR) analysis was employed to evaluate the order of importance of the meteorological and soil water factors involved. Finally, the information gained was used for MLR model development. The results of MLR analysis showed that the combined effects of available energy, soil water content and wind speed were responsible for 77 % of the observed variations in AET at Lucky Hills watershed and 70 % at Kendall watershed during the summer rainy period. The analyses also indicated that the combined effects of available energy, vapor pressure deficit and wind speed were responsible for 70 % of the observed variations in AET at Lucky Hills watershed and 72 % at Kendall watershed during the winter period. However, the test results of three different approaches, using the relationships between AET and PET as a function of soil water content indicated some inadequacy. The low correlation between PET, AET, and soil moisture conditions raised some doubt concerning the validity of methods developed elsewhere, and indicated the effects of energy availability on the relationship between PET, AET, and soil water content regardless of the soil water condition. In contrast, agreement between observed AET and estimated AET from MLR models during the summer rainy and winter periods at both watersheds indicated that MLR models can give reasonable estimates of AET, at least under the climatic conditions in which the formulae were developed.
机译:在夏季多雨和冬季,从半干旱流域(Lucky Hills和Kendall)测得的气象和环境(即土壤含水量)数据用于研究变量之间的相互关系,并评估变量对每日实际蒸散量估计的影响(AET)。 AET和潜在蒸散量(PET)之间的关系作为环境因素的函数是这项研究的主要考虑因素。研究了Thornthwaite-Mather,Morton和Priestley-Taylor提出的AET和PET随土壤含水量的关系,以确定其在研究区域的适用性。此外,采用多元线性回归(MLR)分析来评估所涉及的气象和土壤水分因子的重要性顺序。最后,获得的信息用于MLR模型开发。 MLR分析的结果表明,在夏季多雨时期,在Lucky Hills流域,可用能量,土壤水分和风速的综合影响占观测到的AET变化的77%,在Kendall流域,占70%。分析还表明,在冬季期间,可利用能量,蒸气压赤字和风速的综合影响是所观测到的幸运山分水岭AET变化的70%和肯德尔分水岭AET变化的72%。然而,使用AET和PET之间的关系作为土壤含水量的函数的三种不同方法的测试结果表明存在不足之处。 PET,AET和土壤水分条件之间的低相关性引起了人们对其他地方开发的方法的有效性的怀疑,并表明了能源可用性对PET,AET和土壤水分之间关系的影响,而与土壤水分条件无关。相反,在两个流域的夏季雨季和冬季,观测到的AET与来自MLR模型的估计AET之间的一致性表明,至少在开发公式的气候条件下,MLR模型可以给出AET的合理估计。

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    Rim Chang-Soo.;

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  • 年度 1995
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  • 原文格式 PDF
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