Modification of the radiation-based Abtew reference evapotranspiration model under humid climate, Northeast India

IF 1.5 Q4 WATER RESOURCES
P. K. Pandey, V. Pandey
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Abstract

In this work, seven models of temperature-based solar radiation were used to enhance the Abtew model for ET0 calculation in Northeast India. The only input data needed for the temperature-based models are air temperature, which can be easily measured in most locations worldwide. Under the climatic conditions of Dibrugarh, Northeast India, the applicability of the improved Abtew models (A1–A7), the Stephen-Stewart model (SS), the Irmak model (Ir), and the Modified Turc model (MT) was assessed. Utilizing statistical indices such as mean absolute error (MAE), root-mean-square error (RMSE), standard error (SE), coefficient of correlation (r), coefficient of determination (R2), and index of agreement (D), the performances of all the modified equations (A1–A7) and other chosen ET0 models have been compared. The findings demonstrated that for ET0 estimate at Dibrugarh, the seven upgraded Abtew models (RMSE = 0.44–0.50 mm/day; D = 0.81–0.88) outperformed the four physical models (RMSE = 0.50–2.77 mm/day; D = 0.49–0.82). In the end, the A6 model won the top spot based on many statistical factors. Utilizing the temperature-based solar radiation model significantly increased the Abtew model estimation accuracy. It is strongly advised to estimate ET0 using the A6 model, which needs temperature as input data.
印度东北部潮湿气候下基于辐射的Abtew参考蒸散模型的修正
本文利用7种基于温度的太阳辐射模式对Abtew模式进行了改进,用于印度东北部地区的ET0计算。基于温度的模型所需的唯一输入数据是空气温度,这在世界上大多数地方都可以很容易地测量到。在印度东北部Dibrugarh地区的气候条件下,对改进Abtew模式(A1-A7)、Stephen-Stewart模式(SS)、Irmak模式(Ir)和改进Turc模式(MT)的适用性进行了评价。利用平均绝对误差(MAE)、均方根误差(RMSE)、标准误差(SE)、相关系数(r)、决定系数(R2)、一致性指数(D)等统计指标,对所有修正方程(A1-A7)与其他选择的ET0模型的性能进行比较。结果表明:对于Dibrugarh地区的ET0估算,7种Abtew升级模型(RMSE = 0.44 ~ 0.50 mm/d);D = 0.81-0.88)优于四种物理模型(RMSE = 0.50-2.77 mm/day;D = 0.49-0.82)。最终,综合多种统计因素,A6车型摘得桂冠。利用基于温度的太阳辐射模型显著提高了Abtew模型的估计精度。强烈建议使用A6模型估计ET0,该模型需要温度作为输入数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
H2Open Journal
H2Open Journal Environmental Science-Environmental Science (miscellaneous)
CiteScore
3.30
自引率
4.80%
发文量
47
审稿时长
24 weeks
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