首页> 外文期刊>Grundwasser >Mesoscale modeling of nitrate pollution of rivers by groundwater [Mesoskalige Modellierung der grundwasserbürtigen Nitratbelastung von Flie?gew?ssern]
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Mesoscale modeling of nitrate pollution of rivers by groundwater [Mesoskalige Modellierung der grundwasserbürtigen Nitratbelastung von Flie?gew?ssern]

机译:地下水对河流硝酸盐污染的中尺度模拟[地下水对河流硝酸盐污染的中尺度模拟]

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摘要

A multi-compartment model is applied at the mesoscale to simulate the spatially differentiated nitrate pollution of rivers by groundwater in a test area of 800 km~2 in the northern part of Saxony. Both nitrate influx and discharge processes are considered. Mass transport is represented by applying a multiple flow direction algorithm to the groundwater velocity field of an upper aquifer which is assumed to be continuous in the test area. In total, about one tenth of the nitrate surplus of soils discharges into the rivers of the test area along groundwater flowpaths. In particular, farming areas within 3 km of the rivers emit large amounts of nitrate. The simulations carried out with the compartmentalized approach allow to check model results and to adapt them to average discharge and quality data determined at surface water gauges. They show that the model reflects the average measurement values reasonably well by accounting for the basic hydrogeological conditions.
机译:在中尺度上,采用多室模型模拟了萨克森北部北部800 km〜2的试验区中地下水对河流硝酸盐的空间分异。硝酸盐流入和排放过程都被考虑。通过将多流向算法应用于假定在测试区域中是连续的上含水层的地下水速度场来表示质量传输。总共,大约有十分之一的土壤硝酸盐过剩物沿着地下水流路排入试验区的河流。特别是在河流3公里以内的耕种区排放大量硝酸盐。用分隔方法进行的模拟可以检查模型结果,并使它们适应于在地表水位处确定的平均排放量和质量数据。他们表明,通过考虑基本的水文地质条件,该模型可以较好地反映平均测量值。

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