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A reduced complexity model of a gravel-sand river bifurcation: Equilibrium states and their stability

机译:砾石-沙河分岔的简化模型:平衡态及其稳定性

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We derive an idealized model of a gravel-sand river bifurcation and analyze its stability properties. The model requires nodal point relations that describe the ratio of the supply of gravel and sand to the two downstream branches. The model predicts changes in bed elevation and bed surface gravel content in the two bifurcates under conditions of a constant water discharge, sediment supply, base level, and channel width and under the assumption of a branch-averaged approach of the bifurcates. The stability analysis reveals more complex behavior than for unisize sediment: three to five equilibrium solutions exist rather than three. In addition, we find that under specific parameter settings the initial conditions in the bifurcates determine to which of the equilibrium states the system evolves. Our approach has limited predictive value for real bifurcations due to neglecting several effects (e.g., transverse bed slope, alternate bars, upstream flow asymmetry, and bend sorting), yet it provides a first step in addressing mixed-size sediment mechanisms in modeling the dynamics of river bifurcations.
机译:我们推导了一个理想的砂石河分岔模型并分析了其稳定性。该模型需要节点关系,该关系描述了砾石和沙子到两个下游分支的供应比例。该模型预测了在恒定的排水量,沉积物供应量,基面高度和通道宽度的条件下,以及在假设分支平均为分支的情况下,两个分叉处的床高和床表面砾石含量的变化。稳定性分析显示出比均匀沉积物更复杂的行为:存在三到五个平衡解而不是三个。此外,我们发现在特定的参数设置下,分叉的初始条件决定了系统演化到哪个平衡状态。由于忽略了多种影响(例如,横向床坡度,交替钢筋,上游水流不对称和弯头分类),我们的方法对实际分叉的预测价值有限,但它为解决动力学建模中的混合尺寸沉积物机理提供了第一步分叉。

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