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Estimation of synthetic flood design hydrographs using a distributed rainfall-runoff model coupled with a copula-based single storm rainfall generator

机译:使用分布式降雨-径流模型结合基于copula的单风暴降雨发生器估算综合洪水设计水文图

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In this paper a procedure to derive synthetic flood design hydrographs (SFDH) using a bivariate representation of rainfall forcing (rainfall duration and intensity) via copulas, which describes and models the correlation between two variables independently of the marginal laws involved, coupled with a distributed rainfall-runoff model, is presented. Rainfall-runoff modelling (R-R modelling) for estimating the hydrological response at the outlet of a catchment was performed by using a conceptual fully distributed procedure based on the Soil Conservation Service-Curve Number method as an excess rainfall model and on a distributed unit hydrograph with climatic dependencies for the flow routing. Travel time computation, based on the distributed unit hydrograph definition, was performed by implementing a procedure based on flow paths, determined from a digital elevation model (DEM) and roughness parameters obtained from distributed geographical information. In order to estimate the primary return period of the SFDH, which provides the probability of occurrence of a hydrograph flood, peaks and flow volumes obtained through R-R modelling were treated statistically using copulas. Finally, the shapes of hydrographs have been generated on the basis of historically significant flood events, via cluster analysis. An application of the procedure described above has been carried out and results presented for the case study of the Imera catchment in Sicily, Italy.
机译:在本文中,通过使用copulas使用降雨强迫(降雨持续时间和强度)的双变量表示法来导出合成洪水设计水位图(SFDH)的程序,该程序描述和建模了两个变量之间的相关性,而与所涉及的边际定律无关,并具有分布提出了降雨径流模型。通过使用概念性的完全分布式程序(基于土壤保护服务曲线数方法作为过量降雨模型)和基于分布式水文图的降雨径流建模(RR模型)来估算流域出口的水文响应。流路由的气候依赖性。行程时间的计算基于分布式单位水位图的定义,是通过执行基于流路的过程来进行的,该过程是从数字高程模型(DEM)和从分布式地理信息中获得的粗糙度参数确定的。为了估算SFDH的主要返回期(提供水文洪水发生的可能性),使用copulas对通过R-R建模获得的峰值和流量进行了统计处理。最后,通过历史分析,通过聚类分析生成了水文图形。已经对上述程序进行了应用,并为意大利西西里岛的伊梅拉流域的案例研究提供了结果。

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