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膜下滴灌减氮棉田土壤水氮迁移过程模拟

俞芷若 丁平 吴晨涛 王春霞

干旱地区农业研究2026,Vol.44Issue(2):65-78,14.
干旱地区农业研究2026,Vol.44Issue(2):65-78,14.DOI:10.7606/j.issn.1000-7601.2026.02.07

膜下滴灌减氮棉田土壤水氮迁移过程模拟

Simulation of water and nitrogen transport processes in cotton fields under mulch drip irrigation with reduced nitrogen application

俞芷若 1丁平 2吴晨涛 3王春霞1

作者信息

  • 1. 石河子大学水利建筑工程学院,新疆石河子 832003
  • 2. 新疆水利水电科学院,新疆乌鲁木齐 830049
  • 3. 陕西省蒲城县植保植检站,陕西渭南 715500
  • 折叠

摘要

Abstract

Through a drip irrigation micro-plot experiment with four nitrogen application rates:normal nitrogen(100%N),10%reduction(90%N),20%reduction(80%N),and 30%reduction(70%N),this study moni-tored soil moisture and NO3--N levels at key locations:below the dripper(irrigation core zone),below the cotton row(root-dense zone),and below the wide row(root-sparse zone).The HYDRUS-2D model was used to analyze the transport processes of water and nitrogen under reduced nitrogen drip irrigation in cotton fields.The results showed that the HYDRUS-2D model effectively simulated soil moisture and NO3--N dynamics,with coefficients of determination R2 of water ranging from 0.31 to 0.98,and R2 of nitrogen ranging from 0.44 to 0.99,relative error of the mean absolute error(REMAE)varying between 6.00%and 20.00%,and relative root mean square error(RERMSE)varying between 6.50%and 23.33%.The simulation revealed significant spatial heterogeneity in soil moisture under drip irrigation:sufficient water replenishment occurred in the dripper zone,soil moisture in the cot-ton row zone was strongly influenced by root water uptake,and the wide row zone experienced persistent water defi-cit.Soil NO3--N was primarily accumulated in the 0-30 cm soil layer,with peak concentrations following the spatial pattern:below the dripper(63.00 mg·kg-1)<below the wide row(68.42 mg·kg-1)<below the cotton row(63.4 mg·kg-1).The peak NO3--N values in each zone decreased gradiently as nitrogen reduction increased.Both measured and simulated values of soil NO3--N indicated that the 20%nitrogen reduction treatment achieved the best nitrogen regulation effect,reducing NO3--N by 20.2%-22.7%compared to normal nitrogen application.This effec-tively minimized leaching without negatively affecting cotton growth.

关键词

棉田/减氮/膜下滴灌/水氮迁移/模拟

Key words

cotton field/nitrogen reduction/drip irrigation under mulch/water-nitrogen migration/simulation

分类

农业科技

引用本文复制引用

俞芷若,丁平,吴晨涛,王春霞..膜下滴灌减氮棉田土壤水氮迁移过程模拟[J].干旱地区农业研究,2026,44(2):65-78,14.

基金项目

新疆维吾尔自治区重大科技专项(2024A03006-5) (2024A03006-5)

国家自然科学基金(52369012) (52369012)

干旱地区农业研究

1000-7601

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