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Increasing detail of distributed runoff modeling using fuzzy logic in curve number

机译:Increasing detail of distributed runoff modeling using fuzzy logic in curve number

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摘要

The Soil Conservation Service Curve Number runoff model is widely used in runoff prediction and has been incorporated into many software packages for watershed modeling. The Curve Number (CN) is the key parameter in the model, but it is largely dependent on Hydrologic Soil Group (HSG) classifications which may induce aggregation of detailed soil information. However, little attention and efforts have been paid to reduce such aggregation effect for retaining those valuable soil information to derive more detailed CN. This study proposed to integrate fuzzy logic to derive detailed CN. Membership of a given soil to each HSG is first calculated based on soil properties and HSG classification criteria; then, detailed and continuous CN is derived using the membership as weight for CN of each soil-cover complex. The proposed approach was incorporated into an automation system and its further effects on runoff modeling were examined. A case study shows fuzzy CN possesses more spatial details and leads to obvious spatial differences of simulated runoff. The developed system could also be used to detect inconsistency of HSG placements.
机译:土壤保护服务曲线编号径流模型广泛用于径流预测中,并且已被纳入许多用于分水岭建模的软件包中。曲线编号(CN)是模型中的关键参数,但是它很大程度上取决于水文土壤群(HSG)的分类,这可能会导致汇总详细的土壤信息。然而,为保留这些有价值的土壤信息以得到更详细的CN,很少注意和努力减少这种聚集效应。这项研究提出整合模糊逻辑来得出详细的CN。首先根据土壤特性和HSG分类标准计算给定土壤对每个HSG的隶属度;然后,使用隶属度作为每种土壤覆盖物复合物的CN权重,得出详细而连续的CN。拟议的方法已纳入自动化系统,并研究了其对径流建模的进一步影响。案例研究表明,模糊CN具有更多的空间细节,并导致模拟径流的明显空间差异。开发的系统还可以用于检测HSG放置的不一致。

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