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Linear and nonlinear instabilities of a granular bed: Determination of the scales of ripples and dunes in rivers

机译:颗粒床的线性和非线性不稳定性:确定河流中的涟漪和沙丘规模

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摘要

Granular media are frequently found in nature and in industry and their transport by a fluid flow is of great importance to human activities. One case of particular interest is the transport of sand in open-channel and river flows. In many instances, the shear stresses exerted by the fluid flow are bounded to certain limits and some grains are entrained as bed-load: a mobile layer which stays in contact with the fixed part of the granular bed. Under these conditions, an initially flat granular bed may be unstable, generating ripples and dunes such as those observed on the bed of rivers. In free-surface water flows, dunes are bedforms that scale with the flow depth, while ripples do not scale with it. This article presents a model for the formation of ripples and dunes based on the proposition that ripples are primary linear instabilities and that dunes are secondary instabilities formed from the competition between the coalescence of ripples and free surface effects. Although simple, the model is able to explain the growth of ripples, their saturation (not explained in previous models) and the evolution from ripples to dunes, presenting a complete picture for the formation of dunes.
机译:粒状介质经常在自然界和工业界发现,它们通过流体流动的运输对人类活动非常重要。一个特别令人关注的案例是明渠和河流中的沙子运输。在许多情况下,由流体流施加的剪切应力被限制在一定的范围内,并且一些颗粒被夹带为床层负荷:一个与颗粒床的固定部分保持接触的活动层。在这些条件下,最初平坦的颗粒床可能会不稳定,从而产生波纹和沙丘,例如在河床上观察到的那些。在自由表面水流中,沙丘是随深度变化的床形,而波纹不随深度变化。本文提出了一个基于涟漪和沙丘形成的模型,该模型基于以下观点:涟漪是主要的线性不稳定性,而沙丘是由涟漪的聚结和自由表面效应之间的竞争形成的次要不稳定性。尽管很简单,但是该模型能够解释涟漪的增长,饱和度(在先前的模型中没有解释)以及从涟漪到沙丘的演变过程,为沙丘的形成提供了完整的画面。

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