Modeling wheat growth to determine economic feasibility under deficit irrigation and nitrogen management strategies
作者:Junaid Nawaz Chauhdary, Hong Li, R. Ragab, Zawar Hussain, Shakeel Ahmad Anjum, Mustafoyev Komil llxomovich · 发表于:Agricultural Water Management · 年份:2025 · DOI:10.1016/j.agwat.2025.109740 · 被引用次数:7 · 研究领域:Crop Yield and Soil Fertility、Irrigation Practices and Water Management、Rice Cultivation and Yield Improvement
The sustainability of any agricultural system depends on economical and feasible use of crop inputs to earn the highest net margin. The fertilizers are the essential inputs for crop production, particularly under varying irrigation conditions. To examine these essentials for wheat production, multi-seasonal experiments on varying levels of deficit irrigation and nitrogen applications were conducted for determining their economic feasibility through modeling applications. The experiment involved two irrigation levels [FI=full irrigation (341.6 mm, equivalent to soil-based crop water requirement), DI80 = 80 % of FI (273.3 mm, deficit irrigation)] and two levels of liquid nitrogen fertilizer (LNF) (N:P:K=32:0:0), labelled as LNF100 (434 Lha −1 , 100 % of nitrogen dose) and LNF75 (325.5 Lha −1 , 75 % of nitrogen dose). The highest grain yield (5.75 t.ha −1 ), dry matter (14.38 t.ha −1 ) and plant height (101.3 cm) were achieved under FI.LNF100. However, this treatment had lower water productivity compared to DI80.LNF100 (1.69 vs. 2.00 kgm - ³). The SALTMED model effectively simulated these dynamics, showing high accuracy and reliability during both calibration and validation phases, with low RMSE for grain yield (0.23–0.29 t.ha −1 ), dry matter (0.45–0.93 t.ha −1 ), plant height (1.1–1.89 cm) and soil moisture (0.68–0.75 %). Moreover, the NRMSE varied from 0.11–0.24, R² varied from 0.95–0.85, CRM varied from −0.003–0.05. Additional hypothetical scenarios, including reduced irriga...