Assessment of 40 Empirical Models for Estimating Reference Evapotranspiration under the Three Major Climate Zones of Iraq

被引:2
作者
Al-Hasani, Alaa Adel Jasim [1 ,2 ]
Shahid, Shamsuddin [1 ]
机构
[1] Univ Teknol Malaysia UTM, Fac Engn, Dept Water & Environm Engn, Johor Baharu 81310, Malaysia
[2] Minist Agr, Dept Agrometeorol Applicat & Climate Change, Iraqi Agrometeorol Ctr, Baghdad 10069, Iraq
关键词
Evapotranspiration; Performance evaluation; Empirical models; Iraq; CROP EVAPOTRANSPIRATION; EVAPORATION; TEMPERATURE; HARGREAVES; EQUATIONS; IMPACTS; WATER;
D O I
10.1061/JIDEDH.IRENG-10187
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Accurate reference evapotranspiration (ETo) estimation is crucial for water irrigation management and sustainable agriculture planning. The difficulty in obtaining several data requirements for employing the recommended Food and Agriculture Organization Penman-Monteith method (FAO-PM) for reliable estimation of ETo has led to the development of many empirical models. This is particularly crucial for Iraq, located in West Asia (29 & DEG;15 & PRIME;00 & DPRIME;-38 & DEG;15 & PRIME;00 & DPRIME; N; 38 & DEG;45 & PRIME;00 & DPRIME;-48 & DEG;45 & PRIME;00 & DPRIME; E), where meteorological data are often limited or missing. The objectives of the present study were to assess the performance of 40 ETo empirical models (13 radiation-based, 13 mass-transfer-based, and 14 temperature-based) against the FAO-PM model and identify alternative models with the minimal available data in three major climatic zones of Iraq: the Mediterranean climate (MCZ), semiarid (SCZ), and arid desert (ACZ). The recent ERA5 data set was adopted. The results indicate that (1) the Rohwer mass-transfer method is the best for estimating ETo for two-thirds of Iraq with a mean correlation coefficient (R2) of 0.97, mean Kling-Gupta efficiency (KGE) of 0.84, mean percent bias (PBIAS) of -8.92%, mean Nash-Sutcliffe efficiency coefficient (NSE) of 0.92, and root mean square error (RMSE)-observations standard deviation ratio (RSR) of 0.27, followed by the Penman (R2=0.90, KGE=0.75, NSE=0.77, RSR=0.46, and PBIAS=6.36%) and Caprio (R2=0.90, KGE=0.66, NSE=0.54, RSR=0.58, and PBIAS=24.64%) models; (2) Caprio is the best radiation-based model for estimating ETo, mainly in the ACZ, whereas Kharrufa is the best temperature-based model for estimating ETo, primarily in the SCZ and ACZ. Overall, the mass-transfer-based models performed better than other-based models for ETo estimation. The outcomes of this study provide a scientific reference for accurate ETo estimation using empirical models under limited data sets, which is valuable for irrigation management in Iraq. Accurately estimating ETo is vital for effective water irrigation management and sustainable agriculture planning. However, the recommended method for estimating ETo, the FAO-PM method, requires various data inputs that may not always be readily available, especially in regions like Iraq. Therefore, this study assessed the performance of 40 empirical ETo models, categorized into radiation-based, mass-transfer-based, and temperature-based models, against the FAO-PM model in three major climatic zones of Iraq: the Mediterranean climate, the semiarid region, and the arid desert. The study found that the Rohwer mass-transfer method showed the best performance in estimating ETo for two-thirds of Iraq. The Penman and Caprio models also performed well in estimating ETo in specific areas. The study revealed that the choice of the ETo model varied depending on the climatic zone. The Caprio model performed best for radiation-based estimation in the arid desert, whereas the Kharrufa model was most effective for temperature-based estimation in the semiarid region and arid desert. Overall, the mass-transfer-based models outperformed other types of models in ETo estimation.
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页数:21
相关论文
共 87 条
[51]   Performance evaluation of reference evapotranspiration equations across a range of Indian climates [J].
Nandagiri, Lakshman ;
Kovoor, Gicy M. .
JOURNAL OF IRRIGATION AND DRAINAGE ENGINEERING, 2006, 132 (03) :238-249
[52]   Evaluation of the FAO Penman-Montheith, Priestley-Taylor and Hargreaves models for estimating reference evapotranspiration in southern Malawi [J].
Ngongondo, Cosmo ;
Xu, Chong-Yu ;
Tallaksen, Lena M. ;
Alemaw, Berhanu .
HYDROLOGY RESEARCH, 2013, 44 (04) :706-722
[53]   Which potential evapotranspiration input for a lumped rainfall-runoff model?: Part 2 -: Towards a simple and efficient potential evapotranspiration model for rainfall-runoff modelling [J].
Oudin, L ;
Hervieu, F ;
Michel, C ;
Perrin, C ;
Andréassian, V ;
Anctil, F ;
Loumagne, C .
JOURNAL OF HYDROLOGY, 2005, 303 (1-4) :290-306
[54]  
Papadakis J., 1965, Crop ecologic survey in relation to agricultural development of western pakistan, draft report
[55]   NATURAL EVAPORATION FROM OPEN WATER, BARE SOIL AND GRASS [J].
PENMAN, HL .
PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL AND PHYSICAL SCIENCES, 1948, 193 (1032) :120-&
[56]   Estimation methods to define reference evapotranspiration: a comparative perspective [J].
Pinos, Juan .
WATER PRACTICE AND TECHNOLOGY, 2022, 17 (04) :940-948
[57]   Changes in reference evapotranspiration and its driving factors in peninsular Malaysia [J].
Pour, Sahar Hadi ;
Abd Wahab, Ahmad Khairi ;
Shahid, Shamsuddin ;
Bin Ismail, Zulhilmi .
ATMOSPHERIC RESEARCH, 2020, 246
[58]  
PRIESTLEY CHB, 1972, MON WEATHER REV, V100, P81, DOI 10.1175/1520-0493(1972)100<0081:OTAOSH>2.3.CO
[59]  
2
[60]   Modified Hargreaves-Samani Equation for the Assessment of Reference Evapotranspiration in Alpine River Basins [J].
Ravazzani, Giovanni ;
Corbari, Chiara ;
Morella, Stefano ;
Gianoli, Paride ;
Mancini, Marco .
JOURNAL OF IRRIGATION AND DRAINAGE ENGINEERING, 2012, 138 (07) :592-599