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Approximation zones of the Saint-Venant equations f flood routing with overbank flow

机译:带泛水流量的洪水路径下Saint-Venant方程的逼近区域

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The classification of river waves as gravity, diffusion or kinematic waves, corresponds to different forms of the momentum equation in the Saint-Venant system. This paper aims to define approximation zones of the Saint-Venant equations for flood routing in natural channels with overbank flow in the flooded area. Using linear perturbation theory, the different terms in the Saint-equations were analysed as a function of the balance between friction and inertia. Then, using non-dimensionalised variables, flood waves were expressed as a function of three parameters: the Froude number of the steady uniform flow, a dimensionless wave, number of the unsteady component of the motion and the ratio between the flooded area zone width and the main channel width. Finally, different theoretical cases, corresponding to different flooded area zone widths were analysed and compared. Results show that, when the width of the flooded area increases, the domain of application of the diffusive wave and the inematic wave models is restricted. style="line-height: 20px;">Keywords: Saint-Venant equations; river waves; overbank flow
机译:将河波分类为重力波,扩散波或运动波,对应于Saint-Venant系统中动量方程的不同形式。本文旨在为洪水泛滥区自然河道中的洪水泛滥确定Saint-Venant方程的近似区域。使用线性摄动理论,根据摩擦和惯性之间的平衡,分析了圣徒方程中的不同项。然后,使用无量纲变量,将泛洪波表示为三个参数的函数:稳定均匀流的弗洛德数,无量纲波,运动的非定常分量数以及泛洪区域区域宽度与主通道宽度。最后,分析和比较了对应于不同淹没区带宽度的不同理论情况。结果表明,当淹水区宽度增加时,扩散波和动力波模型的应用范围受到限制。 style =“ line-height:20px;”> 关键字: Saint-Venant方程;河浪超额流量

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