Simulating water-nitrogen transport for winter wheat under drought-rewatering conditions in the North China
作者:Yanbin Li, Aofeng He, Xuewen Gong, Shikai Gao, Qian Wang, Pengcheng He, Yihao Liu, Hao Li · 发表于:Frontiers in Plant Science · 年份:2026 · DOI:10.3389/fpls.2026.1793353 · 研究领域:Soil and Unsaturated Flow、Soil Carbon and Nitrogen Dynamics、Rice Cultivation and Yield Improvement
Introduction: This study integrated field experiments with the HYDRUS-2D model to investigate the effects of water-nitrogen coupling on winter wheat yield and nitrogen transformation. Materials and methods: Field trials incorporated two irrigation regimes-conventional irrigation (75%-100% of field capacity) and drought stress (50%-60% of field capacity)-alongside three nitrogen application rates (100, 200, and 300 kg/ha) applied during the jointing and filling stages. The primary objective was to evaluate the impact of drought and rewatering on the spatiotemporal distribution, transformation, and leaching of soil nitrogen, and to assess the HYDRUS-2D model's applicability in simulating non-steady-state water-nitrogen dynamics. Results: The results indicated that the HYDRUS-2D model demonstrated high accuracy in simulating the spatiotemporal dynamics of ammonium and nitrate nitrogen, with coefficients of determination R2 exceeding 0.78 and both RMSE and MAE values below 5.97. Regarding nitrogen transformation, drought during the jointing stage significantly inhibited nitrification, leading to the accumulation of ammonium nitrogen in the 0-40 cm soil layer. Upon rewatering, the rapid conversion of ammonium to nitrate nitrogen enhanced leaching into deeper soil layers (40-100 cm). Conversely, drought during the filling stage had a minimal impact on nitrogen transformation and posed a comparatively lower risk of nitrate leaching following rewatering. Finally, nitrogen application...