Topographic expressions of bars in channels with variable width

R. Repetto , M. Tubino
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引用次数: 15

Abstract

A three dimensional quasi-analytical model is introduced to determine the flow field and the altimetric response of movable-bed channels subject to periodic width variations. The basic assumptions underlying the analysis are those of small amplitude of width variations and wide channel, so that non linear effects and side wall effects are neglected. The aim of the work is to determine the conditions under which the channel is planimetrically stable or unstable, i.e. it tends to damp (or enhance) a given initial (infinitesimal) perturbation of the channel width due to bank erosion. A simple bank erosion model is adopted whereby the rate of bank retreat is related to the excess shear stress at the banks. Theoretical results suggest that the equilibrium bottom profile is mainly constituted by two components. The first component represents a purely longitudinal bottom deformation, which induces deposition at the widest section and scour at the constraint, where the cross sectionally averaged velocity attains its maximum value. The second component is mainly originated by three dimensional effects and induces a transverse deformation of the bed in the form of a central bar. Its relative position with respect to the former component changes with the length of width variations: under suitable conditions the flow divergence induced by the central bar leads to a maximum velocity at the banks in wide sections, which implies that width variations tend to amplify.

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变宽河道中沙洲的地形表达式
提出了一种三维准解析模型,用于确定周期宽度变化下动床通道的流场和高程响应。分析的基本假设是宽度变化幅度小,通道宽,因此可以忽略非线性效应和侧壁效应。这项工作的目的是确定通道在平面稳定或不稳定的条件下,即它倾向于阻尼(或增强)由于河岸侵蚀引起的通道宽度的给定初始(无穷小)扰动。采用了一个简单的河岸侵蚀模型,其中河岸的后退速度与河岸的超剪应力有关。理论结果表明,平衡底剖面主要由两部分组成。第一个分量表示纯粹的纵向底部变形,它在最宽的截面处引起沉积,在横截面平均速度达到最大值的约束处引起冲刷。第二个分量主要是由三维效应引起的,并以中心杆的形式引起河床的横向变形。它相对于前一个分量的相对位置随着宽度变化的长度而变化:在适当的条件下,由中央沙洲引起的水流散度导致河岸宽断面处流速最大,这意味着宽度变化有放大的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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