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Simulating soil water flow and nitrogen dynamics in a sunflower field irrigated with reclaimed wastewater.

机译:在再生废水灌溉的向日葵田上模拟土壤水流和氮动态。

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Soil water flow and nitrogen dynamics were simulated in sunflower field during and after the growing period, in Northern Greece. Soil water and nitrogen dynamics were evaluated using a one-dimensional simulation model based on the Galerkin finite element method. We examined the effects of irrigation with reclaimed wastewater and nitrogen fertilizer applications on plant growth, water and nitrogen distribution in the soil profile, water and nitrogen balance components and nitrogen leaching to groundwater. The model simulated the temporal variation of soil water content with reasonable accuracy. However, an over estimation of the measured data was observed during the simulation period. Relatively good agreement was found between the simulated and measured NH< sub>4-N and NO< sub>3-N concentrations over time and depth, whereas fluctuations at greater depths were relatively small. Most of the cumulative nitrate-N leaching (44.7 kg N ha-1) occurred during the winter.
机译:在希腊北部,在生长期间和之后模拟向日葵田的土壤水流和氮素动态。使用基于Galerkin有限元方法的一维模拟模型评估土壤水和氮的动力学。我们研究了利用再生废水和氮肥灌溉对植物生长,土壤剖面中水和氮分布,水和氮平衡成分以及氮向地下水的淋溶的影响。该模型以合理的精度模拟了土壤水分的时间变化。但是,在模拟期间观察到了对测量数据的过度估计。在时间和深度上,模拟和测量的NH 4 -N和NO 3 -N浓度之间的相对一致性较好,而较大深度处的波动相对较小。大部分累积的硝态氮淋失(44.7 kg N ha-1)发生在冬季。

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