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首页> 外文期刊>Journal of Hydrology >Modelling of hyperconcentrated flood and channel evolution in a braided reach using a dynamically coupled one-dimensional approach
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Modelling of hyperconcentrated flood and channel evolution in a braided reach using a dynamically coupled one-dimensional approach

机译:使用动态耦合的一维方法在编织范围内的多交流洪水和信道演化建模

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摘要

Hyperconcentrated sediment-laden floods often occur in a braided reach of the Lower Yellow River, usually leading to significant channel evolution. A one-dimensional (1D) morphodynamic model using a dynamically coupled solution approach is developed to simulate hyperconcentrated flood and channel evolution in the braided reach with an extremely irregular cross-sectional geometry. In the model, the improved equations for hydrodynamics account for the effects of sediment concentration and bed evolution, which are coupled with the equations of non-equilibrium sediment transport and bed evolution. The model was validated using measurements from the 1977 and 2004 hyperconcentrated floods. Furthermore, the effects were investigated of different cross-sectional spacings and allocation modes of channel deformation area on the model results. It was found that a suitable cross-sectional distance of less than 3 km should be adopted when simulating hyperconcentrated floods, and the results using the uniform allocation mode can agree better with measurements than other two allocation modes.
机译:过度育沉积物 - 拉登洪水通常发生在较低的黄河的编织范围内,通常导致重要的渠道进化。利用具有极其不规则的横截面几何形状,开发了一种使用动态耦合解决方案方法的一维(1D)形态动力学模型以模拟编织覆盖范围内的过度育次洪水和渠道演变。在该模型中,流体动力学的改进方程对于沉积物浓度和床演化的影响,其与非平衡沉积物运输和床演变的方程联接。使用1977年和2004年超级浓度洪水的测量验证了该模型。此外,在模型结果上研究了不同横截面间距和通道变形区域的分配模式的效果。结果发现,在模拟超细浓度的洪水时,应采用少于3公里的合适横截面距离,并且使用均匀分配模式的结果可以比其他两个分配模式更好地达到更好。

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