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Please use this identifier to cite or link to this item: http://dspace.ucuenca.edu.ec/handle/123456789/40857
Title: Improving reference evapotranspiration (ETo) calculation under limited data conditions in the high Tropical Andes
Authors: Cordova Mora, Mario Andres
Carrillo Rojas, Galo Jose
Vasquez Ojeda, Cristina Alejandra
Celleri Alvear, Rolando Enrique
metadata.dc.ucuenca.correspondencia: Vasquez Ojeda, Cristina Alejandra, cristina.vasquezo@ucuenca.edu.ec
Keywords: Páramo
Calibration
PM-ETo
Vapor pressure deficit
Solar radiation
metadata.dc.ucuenca.areaconocimientofrascatiamplio: 2. Ingeniería y Tecnología
metadata.dc.ucuenca.areaconocimientofrascatidetallado: 2.7.1 Ingeniería Ambiental y Geológica
metadata.dc.ucuenca.areaconocimientofrascatiespecifico: 2.7 Ingeniería del Medio Ambiente
metadata.dc.ucuenca.areaconocimientounescoamplio: 05 - Ciencias Físicas, Ciencias Naturales, Matemáticas y Estadísticas
metadata.dc.ucuenca.areaconocimientounescodetallado: 0521 - Ciencias Ambientales
metadata.dc.ucuenca.areaconocimientounescoespecifico: 052 - Medio Ambiente
Issue Date: 2022
metadata.dc.ucuenca.volumen: Volumen 262
metadata.dc.source: Agricultural Water Management
metadata.dc.identifier.doi: 10.1016/j.agwat.2021.107439
metadata.dc.type: ARTÍCULO
Abstract: 
The computation of the reference crop evapotranspiration (ETo) using the FAO56 Penman-Monteith equation (PM-ETo) requires data on maximum and minimum air temperatures (Tmax, Tmin), relative humidity (RH), solar radiation (Rs), and wind speed (u2). However, the records of meteorological variables are often incomplete or of poor quality. Frequently, in the mountain areas such as those of the Andes, environmental sensors are subject to harsh conditions, due to the diurnal/nocturnal climatic variability causing challenging conditions for meteorological monitoring, which leads to data loss. For high-elevation landscapes like the Andes, the missing variables of vapor pressure deficit and solar radiation cause a high impact on PM-ETo calculation. To assess these limitations, several methods relying on maximum and minimum temperature to estimate the missing variables have been considered in the present investigation. Based on data from three automatic weather stations in the high Tropical Andes (humid páramo, 3298 – 3955 m a.s.l.), we found that the calibration and validation of methods were essential to estimate Rs. Using the (De Jong and Stewart, 1993) (Rs-DS) method we retrieved the highest performance, a RMSE between 2.89 and 3.81 MJ m−2 day−1. Moreover, In the absence of RH observations, replacing the dew point temperature (Tdew) by Tmin was a reliable alternative, when apply the method of (Allen et al., 1998) (VPD-FAO) which showed the highest performance with RMSE between 0.08 and 0.12 kPa. These results yielded highly accurate PM-ETo estimates, with RMSE between 0.29 and 0.34 mm day−1 and RMSE between 0.12 and 0.18 mm day−1, respectively. As expected, when both variables were missing, the ETo calculation increased its error, with an RMSE between 0.32 and 0.42 mm day−1. A proper estimation of ETo in the Andean páramo contributes to improved water productivity for domestic and industrial uses, irrigated agriculture, and hydropower.
URI: http://dspace.ucuenca.edu.ec/handle/123456789/40857
https://www.scopus.com/record/display.uri?eid=2-s2.0-85122469452&doi=10.1016%2fj.agwat.2021.107439&origin=inward&txGid=5c358660a80071886848c46e3f01d2b3
metadata.dc.ucuenca.urifuente: https://www.sciencedirect.com/journal/agricultural-water-management/vol/262/suppl/C
ISSN: 0378-3774
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