Numerical model for the simulation of soil water flow under root absorption conditions

An explicit finite differences routine was developed to simulate three-dimensional water flow from trickle irrigation under unsaturated non-stationary conditions; the code was validated by comparison with analytical solutions, other existing numerical models and laboratory experiments. Recently, the...

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Main Authors: Ángel del Vigo García, Luis Juana Sirgado, Leonor Rodríguez-Sinobas
Format: Article
Language:Spanish
Published: Universitat Politècnica de València 2022-01-01
Series:Ingeniería del Agua
Subjects:
Online Access:https://polipapers.upv.es/index.php/IA/article/view/16531
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author Ángel del Vigo García
Luis Juana Sirgado
Leonor Rodríguez-Sinobas
author_facet Ángel del Vigo García
Luis Juana Sirgado
Leonor Rodríguez-Sinobas
author_sort Ángel del Vigo García
collection DOAJ
description An explicit finite differences routine was developed to simulate three-dimensional water flow from trickle irrigation under unsaturated non-stationary conditions; the code was validated by comparison with analytical solutions, other existing numerical models and laboratory experiments. Recently, the model was improved in order to reproduce flow root absorption via a time dependent macroscopic approach. This work presents the numerical model subroutine for root absorption and some results obtained by the model.
format Article
id doaj-art-f05fa5908c374ec88b10af5c15e2b9be
institution Kabale University
issn 1134-2196
1886-4996
language Spanish
publishDate 2022-01-01
publisher Universitat Politècnica de València
record_format Article
series Ingeniería del Agua
spelling doaj-art-f05fa5908c374ec88b10af5c15e2b9be2025-01-02T10:48:45ZspaUniversitat Politècnica de ValènciaIngeniería del Agua1134-21961886-49962022-01-01261374610.4995/ia.2022.165319261Numerical model for the simulation of soil water flow under root absorption conditionsÁngel del Vigo García0Luis Juana Sirgado1Leonor Rodríguez-Sinobas2Universidad de Castilla-La ManchaUniversidad Politécnica de Madrid.Universidad Politécnica de Madrid.An explicit finite differences routine was developed to simulate three-dimensional water flow from trickle irrigation under unsaturated non-stationary conditions; the code was validated by comparison with analytical solutions, other existing numerical models and laboratory experiments. Recently, the model was improved in order to reproduce flow root absorption via a time dependent macroscopic approach. This work presents the numerical model subroutine for root absorption and some results obtained by the model.https://polipapers.upv.es/index.php/IA/article/view/16531simulación del riegoecuación de richardsaproximación macroscópicacircuito-rcmétodo explícitoriego por goteo
spellingShingle Ángel del Vigo García
Luis Juana Sirgado
Leonor Rodríguez-Sinobas
Numerical model for the simulation of soil water flow under root absorption conditions
Ingeniería del Agua
simulación del riego
ecuación de richards
aproximación macroscópica
circuito-rc
método explícito
riego por goteo
title Numerical model for the simulation of soil water flow under root absorption conditions
title_full Numerical model for the simulation of soil water flow under root absorption conditions
title_fullStr Numerical model for the simulation of soil water flow under root absorption conditions
title_full_unstemmed Numerical model for the simulation of soil water flow under root absorption conditions
title_short Numerical model for the simulation of soil water flow under root absorption conditions
title_sort numerical model for the simulation of soil water flow under root absorption conditions
topic simulación del riego
ecuación de richards
aproximación macroscópica
circuito-rc
método explícito
riego por goteo
url https://polipapers.upv.es/index.php/IA/article/view/16531
work_keys_str_mv AT angeldelvigogarcia numericalmodelforthesimulationofsoilwaterflowunderrootabsorptionconditions
AT luisjuanasirgado numericalmodelforthesimulationofsoilwaterflowunderrootabsorptionconditions
AT leonorrodriguezsinobas numericalmodelforthesimulationofsoilwaterflowunderrootabsorptionconditions