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Nitrogen source apportionment modeling and the effect of land-use class related runoff contributions

机译:氮源分配模型及与土地利用类别有关的径流贡献的影响

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Models simulating nutrient transport at the catchment scale are frequently used for source apportionment and thereby for finding cost-efficient management strategies for water quality improvements. One typical modelling approach at the catchment scale is the use of leaching coefficients (mass per unit flow of water) to compute the nutrient input based on land-use information. In this study two different such model approaches, the lumped Fyrismodel and the distributed HBV-N-D model, were compared based on simulations for the River Fyris catchment in central Sweden. A major difference between the models were different assumptions of specific runoff variations between different land-use classes. These differences had a considerable effect on the computed source apportionment. The higher specific runoff from agricultural areas in the HBV-N-D model compared to the Fyrismodel resulted in a larger contribution of agricultural areas to the total nitrogen export. These results demonstrate the importance of the assumptions of the spatial variation of specific runoff on source apportionment HBV-N-D model estimations.
机译:在流域尺度上模拟养分运移的模型经常用于源头分配,从而找到改善水质的经济有效的管理策略。在流域尺度上,一种典型的建模方法是使用淋溶系数(每单位水流量的质量)基于土地利用信息来计算养分输入。在这项研究中,基于对瑞典中部的菲里斯河流域的模拟,比较了两种不同的模型方法,即集总的菲里斯模型和分布式HBV-N-D模型。模型之间的主要区别在于不同土地利用类别之间特定径流变化的不同假设。这些差异对计算的源分配有很大影响。与Fyris模型相比,HBV-N-D模型中来自农业地区的比径更高,导致农业地区对总氮出口的贡献更大。这些结果证明了特定径流空间变化假设对源分配HBV-N-D模型估计的重要性。

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