Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media

Subsurface drip irrigation systems, compared to other irrigation systems (basin and furrow), enhance the delivery of water and nutrients directly into the root zone. The purposes of this study were to determine wetting front advancement in a subsurface drip irrigation and to compare the results with...

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Main Authors: A. Khorsand, M. Bazaneh, S. Besharat, K. Zeynalzadeh
Format: Article
Language:fas
Published: Isfahan University of Technology 2019-03-01
Series:علوم آب و خاک
Subjects:
Online Access:http://jstnar.iut.ac.ir/article-1-3293-en.html
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spelling doaj-142b35b99ae94951800eb514a4f5b8b62021-04-20T08:19:52ZfasIsfahan University of Technology علوم آب و خاک2476-35942476-55542019-03-01224301316Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous MediaA. Khorsand0M. Bazaneh1S. Besharat2K. Zeynalzadeh3 1. Department of Water Engineering, Faculty of Agriculture, Urmia Lake Research Institute, Urmia University, Urmia, Iran. 1. Department of Water Engineering, Faculty of Agriculture, Urmia Lake Research Institute, Urmia University, Urmia, Iran. 1. Department of Water Engineering, Faculty of Agriculture, Urmia Lake Research Institute, Urmia University, Urmia, Iran. 1. Department of Water Engineering, Faculty of Agriculture, Urmia Lake Research Institute, Urmia University, Urmia, Iran. Subsurface drip irrigation systems, compared to other irrigation systems (basin and furrow), enhance the delivery of water and nutrients directly into the root zone. The purposes of this study were to determine wetting front advancement in a subsurface drip irrigation and to compare the results with the HYDRUS 2D model simulation. In this study, the irrigation using T-Tape was carried out on a sandy-loam soil by two emitters at different irrigation times. The Wet moisture meter device was used to determine the soil water content. Evaluation of the simulated and measured soil water content was performed by using the adjusted determination coefficient (R2), relative error (RE), and the normalized root mean square error (NRMSE). Based on the results, the NRMSE of soil water content prediction for the emitters at the depths of 20 and 40 cm was calculated to be in the range of 10 to 19 and 10 to 13 percent, respectively. Also, RE for the emitters at depths of 20 and 40 cm was in the range of -16 to -5 and 8 to 11 percent, respectively. The average R2 for the emitters at depths of 20 and 40 cm was calculated to be 0.87 and 0.98, respectively. Also, five scenarios (F1, F2, T1, T2 and S1) were evaluated to assess the amount of water stored in the soil profile and water mass balance. The results indicated that the model could be used to predict the soil water content subsurface drip irrigation.http://jstnar.iut.ac.ir/article-1-3293-en.htmlhydrus modelrosetta modelscenariostored waterwater mass balance
collection DOAJ
language fas
format Article
sources DOAJ
author A. Khorsand
M. Bazaneh
S. Besharat
K. Zeynalzadeh
spellingShingle A. Khorsand
M. Bazaneh
S. Besharat
K. Zeynalzadeh
Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
علوم آب و خاک
hydrus model
rosetta model
scenario
stored water
water mass balance
author_facet A. Khorsand
M. Bazaneh
S. Besharat
K. Zeynalzadeh
author_sort A. Khorsand
title Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
title_short Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
title_full Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
title_fullStr Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
title_full_unstemmed Estimation of Water Mass Balance and Soil Wetting Pattern for Subsurface Drip Irrigation in the Porous Media
title_sort estimation of water mass balance and soil wetting pattern for subsurface drip irrigation in the porous media
publisher Isfahan University of Technology
series علوم آب و خاک
issn 2476-3594
2476-5554
publishDate 2019-03-01
description Subsurface drip irrigation systems, compared to other irrigation systems (basin and furrow), enhance the delivery of water and nutrients directly into the root zone. The purposes of this study were to determine wetting front advancement in a subsurface drip irrigation and to compare the results with the HYDRUS 2D model simulation. In this study, the irrigation using T-Tape was carried out on a sandy-loam soil by two emitters at different irrigation times. The Wet moisture meter device was used to determine the soil water content. Evaluation of the simulated and measured soil water content was performed by using the adjusted determination coefficient (R2), relative error (RE), and the normalized root mean square error (NRMSE). Based on the results, the NRMSE of soil water content prediction for the emitters at the depths of 20 and 40 cm was calculated to be in the range of 10 to 19 and 10 to 13 percent, respectively. Also, RE for the emitters at depths of 20 and 40 cm was in the range of -16 to -5 and 8 to 11 percent, respectively. The average R2 for the emitters at depths of 20 and 40 cm was calculated to be 0.87 and 0.98, respectively. Also, five scenarios (F1, F2, T1, T2 and S1) were evaluated to assess the amount of water stored in the soil profile and water mass balance. The results indicated that the model could be used to predict the soil water content subsurface drip irrigation.
topic hydrus model
rosetta model
scenario
stored water
water mass balance
url http://jstnar.iut.ac.ir/article-1-3293-en.html
work_keys_str_mv AT akhorsand estimationofwatermassbalanceandsoilwettingpatternforsubsurfacedripirrigationintheporousmedia
AT mbazaneh estimationofwatermassbalanceandsoilwettingpatternforsubsurfacedripirrigationintheporousmedia
AT sbesharat estimationofwatermassbalanceandsoilwettingpatternforsubsurfacedripirrigationintheporousmedia
AT kzeynalzadeh estimationofwatermassbalanceandsoilwettingpatternforsubsurfacedripirrigationintheporousmedia
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