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首页> 外文期刊>Journal of Hydrology >A hybrid method for flood simulation in small catchments combining hydrodynamic and hydrological techniques
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A hybrid method for flood simulation in small catchments combining hydrodynamic and hydrological techniques

机译:结合水动力和水文技术的小流域洪水模拟混合方法

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The study presents a new hybrid method for the simulation of flood events in small catchments. It combines a physically-based two-dimensional hydrodynamic model and the hydrological unit hydrograph theory. Unit hydrographs are derived using the FLOW-R2D model which is based on the full form of two-dimensional Shallow Water Equations, solved by a modified McCormack numerical scheme. The method is tested at a small catchment in a suburb of Athens-Greece for a storm event which occurred in February 2013. The catchment is divided into three friction zones and unit hydrographs of 15 and 30 min are produced. The infiltration process is simulated by the empirical Kostiakov equation and the Green-Ampt model. The results from the implementation of the proposed hybrid method are compared with recorded data at the hydrometric station at the outlet of the catchment and the results derived from the fully hydrodynamic model FLOW-R2D. It is concluded that for the case studied, the proposed hybrid method produces results close to those of the fully hydrodynamic simulation at substantially shorter computational time. This finding, if further verified in a variety of case studies, can be useful in devising effective hybrid tools for the two-dimensional flood simulations, which are lead to accurate and considerably faster results than those achieved by the fully hydrodynamic simulations. (C) 2016 Elsevier B.V. All rights reserved.
机译:该研究提出了一种新的混合方法,用于模拟小流域的洪水事件。它结合了基于物理的二维水动力模型和水文单位水文理论。使用FLOW-R2D模型导出单位水位图,该模型基于二维浅水方程的完整形式,并通过改进的McCormack数值方案求解。该方法在2013年2月发生在雅典-希腊郊区的小集水区进行了一次暴风雨测试。集水区分为三个摩擦区,并产生了15分钟和30分钟的单位水位图。通过经验Kostiakov方程和Green-Ampt模型模拟入渗过程。将所提出的混合方法的实施结果与集水区出口的水文站的记录数据进行比较,并从完全水动力模型FLOW-R2D中得出结果。结论是,对于所研究的情况,所提出的混合方法在实质上较短的计算时间上产生的结果接近于完全水动力模拟的结果。如果在各种案例研究中进一步证实了这一发现,那么对于为二维洪水模拟设计有效的混合工具,该工具将是有用的,与完全的水动力模拟相比,这些工具可导致准确且显着更快的结果。 (C)2016 Elsevier B.V.保留所有权利。

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