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Hierarchy of models for meandering rivers and related morphodynamic processes

机译:蜿蜒河流的模型层次及相关的形态动力学过程

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摘要

We review the importance of the physical mechanisms involved in river meandering by comparing some existing linear models and extensions thereof. Such models are hierarchically derived from a common and general mathematical framework and then analyzed with a detailed discussion of the physical processes and relevant hypotheses that are involved. Experiments and field data are also used to discuss the related morphodynamic processes. The analysis of the models shows the importance of the closure of secondary currents especially in the modeling of eddy viscosity. This aspect confirms the usefulness of using simplified models for some practical applications, provided the secondary currents are modeled in detail. On the other hand, the free response of the sediments, the phase lag of secondary currents, and the momentum redistribution due to the coupling between the main and the transverse flow are shown to be less relevant. Hence the second-order models, which neglect the effect of superelevation induced by the topography-driven lateral flow on the longitudinal flow, can reasonably be considered a good approximation for both predictive analysis and the computation of the resonant conditions. Finally, the analysis of higher harmonics suggests that the multilobed pattern can intrinsically be present in both second- and fourth-order models
机译:通过比较一些现有的线性模型及其扩展,我们回顾了参与河流蜿蜒的物理机制的重要性。这样的模型是从一个通用的通用数学框架中层次化地得出的,然后通过对所涉及的物理过程和相关假设的详细讨论进行分析。实验和现场数据也用于讨论相关的形态动力学过程。对模型的分析表明了封闭次级电流的重要性,特别是在涡流粘度建模中。如果对次级电流进行了详细建模,则此方面确认了在某些实际应用中使用简化模型的有用性。另一方面,沉积物的自由响应,二次流的相位滞后以及由于主流与横向流之间的耦合而引起的动量重新分布显示出的相关性较小。因此,对于预测分析和共振条件的计算,可以合理地认为二阶模型可以忽略不计,该二阶模型忽略了由地形驱动的横向流引起的超高对纵向流的影响。最后,对高次谐波的分析表明,多瓣模式可以固有地存在于二阶和四阶模型中

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