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A comparison of three simple approaches to identify critical areas for runoff and dissolved reactive phosphorus losses

机译:比较三种确定径流和溶解性活性磷损失关键区域的简单方法

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Diffuse phosphorus (P) losses are the main cause for eutrophication of surface waters in many regions. Implementing mitigation measures on critical source areas (CSAs) is seen to be the most effective way to reduce P losses. Thus, tools are needed that delineate CSAs on the basis of available data. We compared three models based on different approaches and sets of input data: the rainfall-runoff-phosphorus (RRP) model, the dominant runoff processes (DoRP) model, and the Sensitive Catchment Integrated Modeling Analysis Platform (SCIMAP). The RRP model is a parsimonious dynamic model using the topographic index and a binary soil classification to simulate discharge and P losses. The DoRP model distinguishes eight soil classes based on soil and geological maps. It does not account for topography when calculating runoff. SCIMAP assesses runoff risks solely on the basis of topography using the network index. Compared to surface runoff and soil moisture data available from a catchment in Switzerland, the RRP model and SCIMAP made better predictions than the DoRP model, suggesting that in our study area topography was more important for CSA delineation than soil data. Based on the results, we suggest improvements of SCIMAP to enable average risk predictions and the comparison of risk predictions between catchments.
机译:磷的扩散是许多地区地表水富营养化的主要原因。在关键源区(CSA)上实施缓解措施被认为是减少磷损失的最有效方法。因此,需要基于可用数据来描述CSA的工具。我们根据不同的方法和输入数据集比较了三种模型:降雨径流磷(RRP)模型,优势径流过程(DoRP)模型和敏感集水区综合建模分析平台(SCIMAP)。 RRP模型是使用地形指数和二元土壤分类来模拟流量和P损失的简约动态模型。 DoRP模型根据土壤和地质图来区分八个土壤类别。计算径流时,它不考虑地形。 SCIMAP仅使用网络索引根据地形来评估径流风险。与瑞士流域的地表径流和土壤湿度数据相比,RRP模型和SCIMAP比DoRP模型具有更好的预测,这表明在我们的研究区域中,地形对CSA轮廓比土壤数据更重要。根据结果​​,我们建议对SCIMAP进行改进,以实现平均风险预测以及流域之间风险预测的比较。

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