Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot

HYDRUS-1D, a one dimensional water movement and solute transport model, was applied to analyze a border irrigation event in an alfalfa plot located in the irrigation district of "La Violada" (Spain). The research encompassed monitoring of the irrigation event, the setting-up of the numeric...

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Main Authors: Raúl Vázquez, D. Isidoro, B. Sayah
Format: Article
Language:English
Published: Universidad de Cuenca 2013-06-01
Series:Maskana
Subjects:
Online Access:https://publicaciones.ucuenca.edu.ec/ojs/index.php/maskana/article/view/413
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spelling doaj-8c67d0b82e5d4552b5775233d7fa3cbc2020-11-25T00:16:05ZengUniversidad de CuencaMaskana1390-61432477-88932013-06-01419110610.18537/mskn.04.01.07413Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plotRaúl Vázquez0D. Isidoro1B. Sayah2Grupo de Ciencias de la Tierra y del Ambiente, Dirección de Investigación (DIUC), Universidad deCuenca, Av. 12 de abril S/N, Cuenca, Ecuador.Unidad de Suelos y Riegos (asociada al CSIC), Centro de Investigación y TecnologíaAgroalimentaria de Aragón (CITA), Gobierno de Aragón. Avda. de Montañana 930, 50059, Zaragoza, España.Departamento de Ingeniería Rural, E.T.S.I de Agrónomos, Universidad Politécnica de Madrid,Ciudad Universitaria s/n, 28040 Madrid, España.HYDRUS-1D, a one dimensional water movement and solute transport model, was applied to analyze a border irrigation event in an alfalfa plot located in the irrigation district of "La Violada" (Spain). The research encompassed monitoring of the irrigation event, the setting-up of the numerical model, model calibration and evaluation, and sensitivity analysis of the van Genuchten-Mualem parameters. Both the model predictions and field measurements clearly indicated that the soil water content was high during and following the irrigation event. The model even predicted a small evapotranspiration decrease induced by water logging and a significant contribution of capillary rise subsequently the water table rise in the adjacent plot caused by an irrigation event prior to the monitored event in the study plot. The research revealed the need for (i) the improvement of the schematization of the soil profile and the better experimental definition of key model parameters; and (ii) the derivation of more accurate data series for respectively the upper and lower boundary conditions.https://publicaciones.ucuenca.edu.ec/ojs/index.php/maskana/article/view/413HYDRUS-1Dborder irrigationMonte Carlo simulationsvadose zone
collection DOAJ
language English
format Article
sources DOAJ
author Raúl Vázquez
D. Isidoro
B. Sayah
spellingShingle Raúl Vázquez
D. Isidoro
B. Sayah
Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
Maskana
HYDRUS-1D
border irrigation
Monte Carlo simulations
vadose zone
author_facet Raúl Vázquez
D. Isidoro
B. Sayah
author_sort Raúl Vázquez
title Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
title_short Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
title_full Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
title_fullStr Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
title_full_unstemmed Modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
title_sort modeling the unsaturated flow associated with a border irrigation event on an alfalfa plot
publisher Universidad de Cuenca
series Maskana
issn 1390-6143
2477-8893
publishDate 2013-06-01
description HYDRUS-1D, a one dimensional water movement and solute transport model, was applied to analyze a border irrigation event in an alfalfa plot located in the irrigation district of "La Violada" (Spain). The research encompassed monitoring of the irrigation event, the setting-up of the numerical model, model calibration and evaluation, and sensitivity analysis of the van Genuchten-Mualem parameters. Both the model predictions and field measurements clearly indicated that the soil water content was high during and following the irrigation event. The model even predicted a small evapotranspiration decrease induced by water logging and a significant contribution of capillary rise subsequently the water table rise in the adjacent plot caused by an irrigation event prior to the monitored event in the study plot. The research revealed the need for (i) the improvement of the schematization of the soil profile and the better experimental definition of key model parameters; and (ii) the derivation of more accurate data series for respectively the upper and lower boundary conditions.
topic HYDRUS-1D
border irrigation
Monte Carlo simulations
vadose zone
url https://publicaciones.ucuenca.edu.ec/ojs/index.php/maskana/article/view/413
work_keys_str_mv AT raulvazquez modelingtheunsaturatedflowassociatedwithaborderirrigationeventonanalfalfaplot
AT disidoro modelingtheunsaturatedflowassociatedwithaborderirrigationeventonanalfalfaplot
AT bsayah modelingtheunsaturatedflowassociatedwithaborderirrigationeventonanalfalfaplot
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