Simulation of drip irrigation on slope lands

One of the main tasks of drip irrigation is to predict the geometric parameters of the moisture contours by estimating the impact of the water rate and the irrigation water on the moisture distribution in the soil. In this paper the soil water retention curve and function of moisture conductivity ar...

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Main Authors: Alekseev Viktor, Chuchkalov Sergey, Philippov Vladimir, Rechnov Aleksey, Vasiliev Sergey, Krasnov Vyacheslav
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:BIO Web of Conferences
Online Access:https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00218/bioconf_fies2020_00218.html
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spelling doaj-57015aed01d749a88ad712024700cb292021-04-02T17:18:18ZengEDP SciencesBIO Web of Conferences2117-44582020-01-01170021810.1051/bioconf/20201700218bioconf_fies2020_00218Simulation of drip irrigation on slope landsAlekseev ViktorChuchkalov SergeyPhilippov VladimirRechnov AlekseyVasiliev SergeyKrasnov VyacheslavOne of the main tasks of drip irrigation is to predict the geometric parameters of the moisture contours by estimating the impact of the water rate and the irrigation water on the moisture distribution in the soil. In this paper the soil water retention curve and function of moisture conductivity are used to simulate the process of moisture movement taking into account both the state and the type of soil. A software tool has been developed to automate calculations and visualize them. One of the main advantages of this software tool is that it allows using three-dimensional arrays of porosity values, specific surface area and initial soil moisture for each elementary volume of soil. The results of simulating various initial conditions make it possible to form contours and maintain optimum soil moisture right in the area of the plant root zone development. The correspondence of the simulation results to real data was verified by a series of laboratory and field experiments having light-gray forest soil. The calculated coefficients of determination have average values, that are quite high for such tasks, namely 0.68 (horizontal surfaces) and 0.72 (inclined surfaces).https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00218/bioconf_fies2020_00218.html
collection DOAJ
language English
format Article
sources DOAJ
author Alekseev Viktor
Chuchkalov Sergey
Philippov Vladimir
Rechnov Aleksey
Vasiliev Sergey
Krasnov Vyacheslav
spellingShingle Alekseev Viktor
Chuchkalov Sergey
Philippov Vladimir
Rechnov Aleksey
Vasiliev Sergey
Krasnov Vyacheslav
Simulation of drip irrigation on slope lands
BIO Web of Conferences
author_facet Alekseev Viktor
Chuchkalov Sergey
Philippov Vladimir
Rechnov Aleksey
Vasiliev Sergey
Krasnov Vyacheslav
author_sort Alekseev Viktor
title Simulation of drip irrigation on slope lands
title_short Simulation of drip irrigation on slope lands
title_full Simulation of drip irrigation on slope lands
title_fullStr Simulation of drip irrigation on slope lands
title_full_unstemmed Simulation of drip irrigation on slope lands
title_sort simulation of drip irrigation on slope lands
publisher EDP Sciences
series BIO Web of Conferences
issn 2117-4458
publishDate 2020-01-01
description One of the main tasks of drip irrigation is to predict the geometric parameters of the moisture contours by estimating the impact of the water rate and the irrigation water on the moisture distribution in the soil. In this paper the soil water retention curve and function of moisture conductivity are used to simulate the process of moisture movement taking into account both the state and the type of soil. A software tool has been developed to automate calculations and visualize them. One of the main advantages of this software tool is that it allows using three-dimensional arrays of porosity values, specific surface area and initial soil moisture for each elementary volume of soil. The results of simulating various initial conditions make it possible to form contours and maintain optimum soil moisture right in the area of the plant root zone development. The correspondence of the simulation results to real data was verified by a series of laboratory and field experiments having light-gray forest soil. The calculated coefficients of determination have average values, that are quite high for such tasks, namely 0.68 (horizontal surfaces) and 0.72 (inclined surfaces).
url https://www.bio-conferences.org/articles/bioconf/full_html/2020/01/bioconf_fies2020_00218/bioconf_fies2020_00218.html
work_keys_str_mv AT alekseevviktor simulationofdripirrigationonslopelands
AT chuchkalovsergey simulationofdripirrigationonslopelands
AT philippovvladimir simulationofdripirrigationonslopelands
AT rechnovaleksey simulationofdripirrigationonslopelands
AT vasilievsergey simulationofdripirrigationonslopelands
AT krasnovvyacheslav simulationofdripirrigationonslopelands
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