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Development of a risk-based multi-criteria approach for watershed prioritization with consideration of soil erosion alleviation (case study of Iran)

机译:考虑减轻水土流失的情况,开发一种基于风险的多准则分水岭优先排序方法(伊朗案例研究)

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摘要

The classification of erosion-prone areas is a pre-requisite for providing an efficient watershed management as well as soil conservation. Thus, a practical decision support tool is required to assign priority weights to different related criteria. In this article, 13 effective soil erosion criteria have been used to prioritize different sub-watersheds in Arangeh watershed, Iran. The criteria have been classified in four groups of soil, geomorphology, topography and climate categories. The ranking outcomes of sub-watersheds via Modified Pacific Southwest Inter-Agency Committee method were compared with induced ordered weighted averaging (IOWA) model which considered hierarchy-based attitude and risk-based attitude (RBA) criteria. Copeland aggregation method was also applied as a benchmark for the comparison. Kendall's Tau, a nonparametric stochastic test, investigated that RBA-based IOWA with fairly optimistic coefficient (a = 0.5) is the most conclusive ranking model because of its highest correlation coefficient which was about 0.9. Finally, the hierarchical clustering method classified sub-catchments. According to the results, four priority groups were identified based on vulnerability of sub-watersheds to soil erosion.
机译:易蚀区域的分类是提供有效的流域管理和土壤保护的先决条件。因此,需要一种实用的决策支持工具来将优先权重分配给不同的相关标准。在本文中,已使用13个有效的土壤侵蚀标准对伊朗Arangeh流域的不同子流域进行了优先排序。该标准分为四类:土壤,地貌,地形和气候类别。通过修改后的太平洋西南部跨机构委员会方法对子流域的排序结果与考虑了基于层次的态度和基于风险的态度(RBA)标准的诱导有序加权平均(IOWA)模型进行了比较。谷轮聚合法也被用作比较的基准。 Kendall的Tau(一种非参数随机检验)调查了基于RBA的IOWA(具有相当乐观的系数(a = 0.5))是最结论性的排名模型,因为其最高相关系数约为0.9。最后,分层聚类方法对子流域进行了分类。根据结果​​,根据子流域对土壤侵蚀的脆弱性确定了四个优先组。

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