首页> 外文期刊>Journal of Water and Land Development >Using Water and Agrochemicals in the Soil, Crop and Vadose Environment (WAVE) Model to Interpret Nitrogen Balance and Soil Water Reserve Under Different Tillage Managements
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Using Water and Agrochemicals in the Soil, Crop and Vadose Environment (WAVE) Model to Interpret Nitrogen Balance and Soil Water Reserve Under Different Tillage Managements

机译:使用土壤,作物和渗流环境(WAVE)模型中的水和农药,解释不同耕作管理下的氮平衡和土壤水储量

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Applying models to interpret soil, water and plant relationships under different conditions enable us to study different management scenarios and then to determine the optimum option. The aim of this study was using Water and Agrochemicals in the soil, crop and Vadose Environment (WAVE) model to predict water content, nitrogen balance and its components over a corn crop season under both conventional tillage (CT) and direct seeding into mulch (DSM). In this study a corn crop was cultivated at the Irstea experimental station in Montpellier, France under both CT and DSM. Model input data were weather data, nitrogen content in both the soil and mulch at the beginning of the season, the amounts and the dates of irrigation and nitrogen application. The results show an appropriate agreement between measured and model simulations (nRMSE 10%). Using model outputs, nitrogen balance and its components were compared with measured data in both systems. The amount of N leaching in validation period were 10 and 8 kgha–1 in CT and DSM plots, respectively; therefore, these results showed better performance of DSM in comparison with CT. Simulated nitrogen leaching from CT and DSM can help us to assess groundwater pollution risk caused by these two systems.
机译:应用模型解释不同条件下的土壤,水和植物的关系,使我们能够研究不同的管理方案,然后确定最佳选择。这项研究的目的是在土壤,作物和渗流环境(WAVE)模型中使用水和农药,以预测传统耕作(CT)和直接播种到覆盖下的玉米作物季节中的水分,氮平衡及其组成成分( DSM)。在这项研究中,在法国蒙彼利埃的Irstea实验站以CT和DSM方式种植了一种玉米作物。模型输入数据是天气数据,季节开始时土壤和覆盖物中的氮含量,灌溉和施氮的量和日期。结果表明,实测和模型仿真之间具有适当的一致性(nRMSE <10%)。使用模型输出,将氮平衡及其成分与两个系统中的测量数据进行比较。在验证期内,CT和DSM图上的氮淋失量分别为10和8 kgha-1。因此,这些结果表明DSM的性能优于CT。从CT和DSM中模拟的氮淋滤可以帮助我们评估由这两个系统引起的地下水污染风险。

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