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A field-modeling study for assessing temporal variations of soil-water-crop interactions under water-saving irrigation strategies

机译:节水灌溉策略下土壤-作物间相互作用时空变化的田间模拟研究

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Simulation models are useful tools that may help to improve our understanding of soil-water-plant interactions under innovative water-saving irrigation strategies. In this study, the HYDRUS-2D model was applied to evaluate the influence of deficit irrigation (DI) and partial root-zone drying (PRD) on maize water extractions during two cropping cycles of 2010 and 2011. The model was calibrated and validated using measured soil water content data (expressed as equivalent water depths). Reliable estimates of soil water content were provided by HYDRUS-2D, with root mean square error and mean bias error values of 2.3-5.11 and 1.63-4.93 mm, respectively. Root water uptake and maize grain yields were reduced by 13.2-28.8% and 13.6-52.8%, respectively, under different water-saving irrigation treatments compared to full irrigation. However, different root and water repartitions in the PRD treatment with a 25% reduction in the irrigation depth (PRD75) improved soil water utilization and consequently, crop growth. Increased root water uptake (2.2-4.4 times higher than in other treatments) from the 60-100 cm soil depth in the PRD75 treatment maintained a favorable daily evapotranspiration rate, resulting in no significant reduction in maize grain yield compared to full irrigation. Consequently, a 15.7-85% increase in water use efficiency for maize cultivation under PRD75 ensured 25% water savings without threatening food security in the study area. It can be concluded that HYDRUS-2D can be successfully used to optimize water management under local water-stress conditions. (C) 2016 Elsevier B.V. All rights reserved.
机译:模拟模型是有用的工具,可以帮助我们在创新节水灌溉策略下增进对土壤-水-植物相互作用的了解。在本研究中,使用HYDRUS-2D模型评估了2010年和2011年的两个种植周期中的亏水灌溉(DI)和部分根区干燥(PRD)对玉米水提取的影响。测得的土壤含水量数据(表示为等效水深)。 HYDRUS-2D提供了土壤含水量的可靠估计,其均方根误差和平均偏差误差值分别为2.3-5.11和1.63-4.93 mm。与完全灌溉相比,在不同节水灌溉方式下,根系吸水量和玉米籽粒产量分别降低了13.2-28.8%和13.6-52.8%。但是,在珠三角处理中,根系和水分的分配不同,灌溉深度减少了25%(PRD75),从而提高了土壤水分利用率,从而促进了作物生长。在PRD75处理中,从60-100厘米土壤深度增加的根系吸水量(比其他处理方法高2.2-4.4倍)保持了良好的每日蒸散量,与完全灌溉相比,玉米籽粒产量没有显着降低。因此,在PRD75下,玉米种植用水效率提高15.7-85%,可确保节水25%,而不会威胁研究区域的粮食安全。可以得出结论,HYDRUS-2D可以成功地用于优化局部缺水条件下的水管理。 (C)2016 Elsevier B.V.保留所有权利。

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