Articles | Volume 15, issue 8
https://doi.org/10.5194/hess-15-2495-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/hess-15-2495-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Generating reference evapotranspiration surfaces from the Hargreaves equation at watershed scale
C. Aguilar
Fluvial Dynamics and Hydrology Research Group, University of Córdoba, Córdoba, Spain
M. J. Polo
Fluvial Dynamics and Hydrology Research Group, University of Córdoba, Córdoba, Spain
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- Performance evaluation of modified versions of Hargreaves equation across a wide range of Iranian climates P. Hosseinzadeh Talaee 10.1007/s00703-014-0333-5
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- Estimating evaporation based on standard meteorological data – progress since 2007 M. Peel & T. McMahon 10.1177/0309133314522283
- A method for detecting the non-stationarity during high flows under global change Z. Zhang et al. 10.1016/j.scitotenv.2022.158341
- Estimation of evapotranspiration by the Food and Agricultural Organization of the United Nations (FAO) Penman–Monteith temperature (PMT) and Hargreaves–Samani (HS) models under temporal and spatial criteria – a case study in Duero basin (Spain) R. Moratiel et al. 10.5194/nhess-20-859-2020
- Reference grass evapotranspiration with reduced data sets: Parameterization of the FAO Penman-Monteith temperature approach and the Hargeaves-Samani equation using local climatic variables P. Paredes et al. 10.1016/j.agwat.2020.106210
- Correcting Hargreaves‐Samani formula using geographical coordinates and rainfall over different timescales N. Elagib & A. Musa 10.1002/hyp.14790
- Extreme values of snow-related variables in Mediterranean regions: trends and long-term forecasting in Sierra Nevada (Spain) M. Pérez-Palazón et al. 10.5194/piahs-369-157-2015
- Development of A Spatial Decision System for Irrigation Management A. Pandey & N. Mogarekar 10.1007/s12524-020-01305-2
- On the influence of cell size in physically-based distributed hydrological modelling to assess extreme values in water resource planning M. Egüen et al. 10.5194/nhess-12-1573-2012
- Spatial and temporal variability analysis of green and blue evapotranspiration of wheat in the Egyptian Nile Delta from 1997 to 2017 A. Elbeltagi et al. 10.1016/j.jhydrol.2020.125662
- Fully Distributed Water Balance Modelling in Large Agricultural Areas—The Pinios River Basin (Greece) Case Study V. Pisinaras et al. 10.3390/su15054343
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- Use of expert elicitation to assign weights to climate and hydrological models in climate impact studies E. Sebok et al. 10.5194/hess-26-5605-2022
- Assessing climate change impacts in the Cauvery Basin using evapotranspiration projections and its implications on water management A. J & A. E 10.1007/s00704-024-04998-4
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- Performance evaluation of satellite-based approaches for the estimation of daily air temperature and reference evapotranspiration H. Shwetha & D. Nagesh Kumar 10.1080/02626667.2018.1505046
- Hydroclimatic Variability in the Bilate Watershed, Ethiopia Y. Orke & M. Li 10.3390/cli9060098
- Calibration and spatial modelling of daily ET0 in semiarid areas using Hargreaves equation F. Gomariz-Castillo et al. 10.1007/s12145-017-0327-1
- On modeling reference crop evapotranspiration under lack of reliable data over Iran M. Nouri & M. Homaee 10.1016/j.jhydrol.2018.09.037
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- Holocene lake‐level evolution of Lake Tiefer See, NE Germany, caused by climate and land cover changes M. Theuerkauf et al. 10.1111/bor.12561
- Reformulating and testing Temesgen-Melesse's temperature-based evapotranspiration estimation method B. Mengistu & G. Amente 10.1016/j.heliyon.2019.e02954
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- Proposal for the use of daily thermal amplitude for the calibration of the Hargreaves-Samani equation S. Zanetti et al. 10.1016/j.jhydrol.2019.01.049
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