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A Fast Semi Distributed Rainfall Runoff Model for Engineering Applications in Arid and Semi-Arid Regions

机译:干旱和半干旱地区工程应用的快速半分布式降雨径流模型

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摘要

A new GIS based rainfall runoff model is developed for engineering applications, achieving a highly automated watershed analysis process starting from watershed delineation and up to the runoff hydrograph calculation. The model can be classified as a semi-distributed time area model that adopts an improved grid based approach for calculation of watershed response. The model deals with each grid cell in the digital elevation model as an independent hydrologic unit. Travel time through each grid cell is estimated using Manning's formula and a stream power formula that relates the hydraulic radius at the cell to the characteristics of its upstream watershed area and excess rainfall depth. The watershed response at its outlet is estimated by routing the response of each grid cell using a flow path response function that is defined for that cell. The routed responses of all watershed cells are then convoluted to produce the outflow hydrograph. Model advantages include accuracy improvements due to the incorporation of grid-based routing calculations (both translation and attenuation), fully automated model structure, and fast ability to model many watersheds simultaneously. The combination of these advantages constitutes the novelty of the model that makes it very suitable for engineering design as well as for real-time applications. The model was tested using the data of the experimental watershed, Walnut Gulch, Arizona, USA, gauged by 88 rainfall stations and several discharge recording flumes. The results show that the model can accurately predict the runoff hydrograph where suitable input is available.
机译:开发了一种基于GIS的新降雨径流模型以用于工程应用,实现了从流域轮廓描述到径流水位图计算的高度自动化流域分析过程。该模型可以分类为半分布式时域模型,该模型采用改进的基于网格的方法来计算分水岭响应。该模型将数字高程模型中的每个网格单元作为独立的水文单元处理。使用曼宁公式和流功率公式估算通过每个网格单元的时间,该公式将单元的水力半径与其上游分水岭区域的特征和过多的降雨深度相关联。通过使用为每个网格单元定义的流路响应函数路由每个网格单元的响应,可以估算其出口处的分水岭响应。然后,对所有分水岭单元的路由响应进行卷积以生成流出水文图。模型的优势包括由于合并了基于网格的路由计算(转换和衰减)而带来的准确性提高,全自动的模型结构以及快速同时建模多个流域的能力。这些优点的结合构成了该模型的新颖性,使其非常适合工程设计以及实时应用。使用美国亚利桑那州核桃谷的实验流域的数据对模型进行了测试,该流域的数据由88个降雨站和几个排水记录水槽测量。结果表明,该模型可以在适当输入可用的情况下准确预测径流水文。

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