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Overland flow computations in urban and industrial catchments from direct precipitation data using a two-dimensional shallow water model

机译:使用二维浅水模型根据直接降水数据计算城市和工业流域的陆上流量

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This paper presents the experimental validation and the application to a real industrial catchment of a two-dimensional depth-averaged shallow water model used for the computation of rainfallrunoff transformation from direct precipitation data. Instead of using the common approach in flood inundation modelling, which consists in computing the water depth and velocity fields given the water discharge, in this study the rainfall intensity is imposed directly in the model, the surface runoff being generated automatically. The model considers infiltration losses simultaneously with flow simulation. Gullies are also included in the model, although the coupling between the surface runoff and the sewer network is not considered. Experimental validation of the model is presented in several simplified laboratory configurations of urban catchments, in which the surface runoff has been measured for different hyetographs. The application to a real industrial catchment includes a sewer network flow component, which is solved with the SWMM model. The numerical predictions of the discharge hydrograph generated by a 12 hours storm event are compared with field measurements, providing encouraging results.
机译:本文介绍了二维深度平均浅水模型的实验验证,并将其应用于实际工业流域,该模型用于根据直接降水数据计算降雨径流转换。代替在洪水淹没模型中使用通常的方法(该方法包括在给定排水量的情况下计算水深和速度场),本研究将降雨强度直接施加到模型中,自动生成地表径流。该模型在流动模拟的同时考虑了渗透损失。尽管未考虑地表径流和下水道网络之间的耦合,但该模型中也包括沟壑。在城市流域的几种简化的实验室配置中,对该模型进行了实验验证,其中已针对不同的湿度记录仪测量了地表径流。实际工业流域的应用程序包括下水道网络流组件,可通过SWMM模型解决。将12小时暴风雨事件产生的排放水位图的数值预测与现场测量结果进行了比较,提供了令人鼓舞的结果。

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