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Numerical analysis of the fate of nitrogen in the profile root zone of an agricultural field

机译:农业领域剖面根带中氮气命运的数值分析

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The fate of nitrogen in the soil is of major concern because of the potential hazard that nitrogen, applied in excess of the natural decomposing capacity of the soil, contaminates shallow and deep aquifers. For the prediction of the nitrogen behaviour in soils simulation models are frequently used. In this study the transport and fate of nitrate within the soil profile was analysed by comparing historic field data with the simulation results of two mathematical models, i.e. the WAVE and DRAINMOD model. Comparison between experimental measured and simulated state variables indicate that the nitrate concentrations in the soil is controlled by the fertiliser practice, the initial conditions and the rainfall depth and distribution. Furthermore, the study reveals that the models used give a fair description of the nitrogen dynamics in the profile root zone at field scale. From the comparative analysis between experimental data and simulation results it can also be concluded that both models after calibration are useful tools to optimise as a function of the combination 'climate-crop-soil-bottom boundary condition' the nitrogen application strategy resulting, from environmental point of view, in an acceptable level of nitrate leaching.
机译:土壤中氮的命运是主要的关注,因为含氮的潜在危害,施用过量土壤的天然分解能力,污染浅层和深层含水层。为了预测土壤中的氮行为仿真模型经常使用。在这项研究中,通过将历史现场数据与两个数学模型的模拟结果进行比较,分析了土壤分析中硝酸盐内的运输和命运,即波和漏极模型。实验测量和模拟状态变量之间的比较表明,土壤中的硝酸盐浓度由肥料实践,初始条件和降雨量深度和分布控制。此外,该研究表明,所用模型在现场规模处提供了轮廓根区中的氮动力学的公平描述。从实验数据和仿真结果之间的比较分析,也可以得出结论,校准后的两种型号都是有用的工具,以优化作为组合的“气候 - 土壤 - 底部边界条件”氮应用策略从环境中获得的效果优化。在可接受的硝酸盐浸出水平中的观点。

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