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Bed and bank evolution of bifurcating channels

机译:分叉通道的床和河床演变

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The evolution of natural river channels is strongly affected by the interplay between the altimetric pattern and the planimetric configuration acting contemporary in branches of braided rivers. Very few quantitative observations are presently available to characterize such interactions. In the present contribution we discuss the results of experimental runs performed with both uniform and graded sediments. The experiments were aimed at describing quantitatively the evolution of a single laterally unconstrained channel until the occurrence of the first bifurcation. An objective criterion for the occurrence of the bifurcation has been established using the data provided by the Fourier analysis of the evolving bank profiles; the procedure enabled us to characterize the morphodynamic sequence leading to flow and channel bifurcation. The sought outcome of the investigation is to derive a suitable description of the bifurcation process to be implemented in predictive models for braiding evolution, for which physically based nodal point conditions would be highly desirable.
机译:天然河道的演变受到辫状河支流中的高空模式与当代作用的平面结构之间相互作用的强烈影响。目前很少有定量观察来表征这种相互作用。在目前的贡献中,我们讨论了对均匀和分级沉积物进行的实验运行结果。实验旨在定量描述单个横向不受约束的通道直到第一次分叉发生之前的演变。分叉发生的客观标准是通过对不断变化的河岸剖面进行傅立叶分析提供的数据建立的;该程序使我们能够表征导致流动和通道分叉的形态动力学序列。研究的寻求结果是得出将在编织进化的预测模型中实施的分叉过程的合适描述,对于该分叉过程,基于物理的节点点条件将是非常理想的。

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