Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application

Efficient irrigation scheduling and optimal management of nitrogen (N) fertilizer application improve N use efficiency while reducing runoff and nitrate leaching risks. This study developed a COMSOL numerical model incorporating time-dependent nonuniform infiltration boundaries to investigate soil w...

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Main Authors: Rui Chen, Xiaofang Chen, Jian Wang, Xin Guo, Hong Li
Format: Article
Language:English
Published: Elsevier 2025-08-01
Series:Agricultural Water Management
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Online Access:http://www.sciencedirect.com/science/article/pii/S0378377425003683
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author Rui Chen
Xiaofang Chen
Jian Wang
Xin Guo
Hong Li
author_facet Rui Chen
Xiaofang Chen
Jian Wang
Xin Guo
Hong Li
author_sort Rui Chen
collection DOAJ
description Efficient irrigation scheduling and optimal management of nitrogen (N) fertilizer application improve N use efficiency while reducing runoff and nitrate leaching risks. This study developed a COMSOL numerical model incorporating time-dependent nonuniform infiltration boundaries to investigate soil water-nitrogen dynamics under sprinkler irrigation after surface fertilizer application. Validated by soil tank experiments, the model assessed impacts of irrigation uniformity, strategy (continuous and intermittent), and fertilization amount (Fa) on soil water and nitrate transport characteristics, nitrate leaching risk, and nitrate distribution uniformity. Results show that according to the vertical distribution characteristics of water and nitrogen in the soil profile, nitrate leaching risk depended primarily on water application rate and irrigation duration rather than Fa. Intermittent irrigation enhanced lateral water redistribution, improved the uniformity of soil water content distribution, but reduced the uniformity of soil nitrate concentration distribution. As the uniformity coefficient of sprinkler irrigation (CUi) increased, the uniformity coefficients of soil water content distribution (CUsw) and nitrate concentration distribution (CUsn) also increased. When CUi was 40 %, the CUsw and CUsn were greater than 94 % and 15 % under intermittent sprinkler irrigation, while those were greater than 88 % and 39 % under continuous irrigation. Notably, intermittent strategies reduced vertical nitrate transport distance by 43.18 % compared to continuous irrigation, mitigating leaching risks. While CUsw consistently exceeded CUi due to soil moisture redistribution, optimal CUsn required CUi > 60 % for continuous and > 80 % for intermittent systems. The results establish a water application rate threshold of 30 mm h−1 and a maximum duration of 2.7 h for silty clay loam to prevent environmental contamination. This modeling framework enables precision irrigation scheduling that could enhance N-use efficiency while protecting groundwater ecosystem, recommending intermittent sprinkler irrigation after surface N fertilizer application for sustainable water-fertilizer management.
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institution Kabale University
issn 1873-2283
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publishDate 2025-08-01
publisher Elsevier
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series Agricultural Water Management
spelling doaj-art-8d1706691e174fbfa352f23d487513832025-08-20T03:34:31ZengElsevierAgricultural Water Management1873-22832025-08-0131710965410.1016/j.agwat.2025.109654Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer applicationRui Chen0Xiaofang Chen1Jian Wang2Xin Guo3Hong Li4Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaCorresponding authors.; Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaResearch Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaCorresponding authors.; Research Center of Fluid Machinery Engineering and Technology, Jiangsu University, Zhenjiang 212013, ChinaEfficient irrigation scheduling and optimal management of nitrogen (N) fertilizer application improve N use efficiency while reducing runoff and nitrate leaching risks. This study developed a COMSOL numerical model incorporating time-dependent nonuniform infiltration boundaries to investigate soil water-nitrogen dynamics under sprinkler irrigation after surface fertilizer application. Validated by soil tank experiments, the model assessed impacts of irrigation uniformity, strategy (continuous and intermittent), and fertilization amount (Fa) on soil water and nitrate transport characteristics, nitrate leaching risk, and nitrate distribution uniformity. Results show that according to the vertical distribution characteristics of water and nitrogen in the soil profile, nitrate leaching risk depended primarily on water application rate and irrigation duration rather than Fa. Intermittent irrigation enhanced lateral water redistribution, improved the uniformity of soil water content distribution, but reduced the uniformity of soil nitrate concentration distribution. As the uniformity coefficient of sprinkler irrigation (CUi) increased, the uniformity coefficients of soil water content distribution (CUsw) and nitrate concentration distribution (CUsn) also increased. When CUi was 40 %, the CUsw and CUsn were greater than 94 % and 15 % under intermittent sprinkler irrigation, while those were greater than 88 % and 39 % under continuous irrigation. Notably, intermittent strategies reduced vertical nitrate transport distance by 43.18 % compared to continuous irrigation, mitigating leaching risks. While CUsw consistently exceeded CUi due to soil moisture redistribution, optimal CUsn required CUi > 60 % for continuous and > 80 % for intermittent systems. The results establish a water application rate threshold of 30 mm h−1 and a maximum duration of 2.7 h for silty clay loam to prevent environmental contamination. This modeling framework enables precision irrigation scheduling that could enhance N-use efficiency while protecting groundwater ecosystem, recommending intermittent sprinkler irrigation after surface N fertilizer application for sustainable water-fertilizer management.http://www.sciencedirect.com/science/article/pii/S0378377425003683N-fertilizer managementNumerical simulationSprinkler irrigationNitrate transportUniformityCOMSOL
spellingShingle Rui Chen
Xiaofang Chen
Jian Wang
Xin Guo
Hong Li
Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
Agricultural Water Management
N-fertilizer management
Numerical simulation
Sprinkler irrigation
Nitrate transport
Uniformity
COMSOL
title Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
title_full Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
title_fullStr Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
title_full_unstemmed Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
title_short Regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
title_sort regulation of soil nitrogen spatiotemporal variation by sprinkler irrigation patterns under surface fertilizer application
topic N-fertilizer management
Numerical simulation
Sprinkler irrigation
Nitrate transport
Uniformity
COMSOL
url http://www.sciencedirect.com/science/article/pii/S0378377425003683
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AT jianwang regulationofsoilnitrogenspatiotemporalvariationbysprinklerirrigationpatternsundersurfacefertilizerapplication
AT xinguo regulationofsoilnitrogenspatiotemporalvariationbysprinklerirrigationpatternsundersurfacefertilizerapplication
AT hongli regulationofsoilnitrogenspatiotemporalvariationbysprinklerirrigationpatternsundersurfacefertilizerapplication