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Scaling properties of flood hydrographs and their use to derive design flood hydrographs

机译:泛洪文化的缩放性质及其用于衍生设计泛滥的水文

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For planning water management projects, design flood hydrographs are required. These hydrological tools are inputs for hydraulics modelling which provide a delineation of the flooded areas. These hydrographs are mostly relative to the instantaneous discharge associated to a predetermined return period and their shape is computed by mathematical formulations. In this paper, a method for deriving hydrological scenarios is presented. This method is based on the analysis of the observed hydrographs. Parameters describing the shape of the hydrographs are defined : K, the scale coefficient, ECARTY, a parameter characterising the spread near the peak and, ASY, the asymmetric parameter and a duration δ which reflects the dynamic of the observed floods. ECARTY represents the concentration of the volume around the peak discharge and ASY gives information about the location of the volume in comparison with the peak. Starting with the assumption of invariant shape of hydrographs with the runoffs magnitude, reference scenarios are built by using the average of observed hydrographs, which are preliminary standardised by the mean volume flowing over a duration δ . An application on catchments with different hydrological regimes is carried out to evaluate the relevance of shape invariant assumption. Finally, design flood projects obtained with this method are computed by reference discharges quantiles and compared to observed flood events in term of shape characteristics.
机译:对于规划水管理项目,需要设计泛水文。这些水力工具是液压建模的输入,其提供了淹没区域的描绘。这些水文主要是相对于与预定返回时段相关的瞬时放电,并且它们的形状由数学制剂计算。本文提出了一种推导水文场景的方法。该方法基于对观察到的水文的分析。描述了文献编程形状的参数定义:K,比例系数,Ecarty,表征峰值附近的扩展和反映观察到的洪水的动态的参数,表征差异,Asy,不对称参数和持续时间δ。 ECARTY表示峰值放电周围的体积的浓度,并且ASY与峰值相比,提供了有关体积位置的信息。从具有径流幅度的方便形状的假设开始,通过使用观察的文文照片的平均值构建参考场景,其通过在持续时间δ上流动的平均体积初步标准化。进行了对不同水文制度的集水区的应用,以评估形状不变假设的相关性。最后,使用该方法获得的设计泛洪项目通过参考放电量数来计算,并在形状特征期间观察到的洪水事件进行比较。

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