论文标题

沉积物负载决定河流的形状

Sediment load determines the shape of rivers

论文作者

Popović, Predrag, Devauchelle, Olivier, Abramian, Anaïs, Lajeunesse, Eric

论文摘要

了解河流如何适应其携带的沉积物负荷对于预测景观的演变至关重要。但是,目前,即使在实验室河流的简单情况下,也没有可靠地基于物理模型可靠地捕获基本河流特性(例如其形状或坡度)对沉积物的依赖。在这里,我们展示了作用在沉积物谷物上的流体应力和重力之间的平衡以及沉积物的横流扩散,决定了层状实验室河流的形状和沉积物通量剖面,这些层状河流载有沉积物作为床位。使用此模型可靠地重现实验而无需进行任何调整的模型,我们证实了帕克(1978)最初提出的假设,即河流仅限于沉积物运动的阈值(约20%)。该限制是由流体 - 补充相互作用设定的,并且独立于河流承载的水和沉积物负荷。因此,随着总沉积物排放的增加,河流中沉积物通量的强度(每单位宽度的沉积物排放)饱和,河流只能通过扩大来运输更多的沉积物。在这种较大的排放状态下,动量在流动中的横流扩散允许沉积物传输。相反,在弱运输方式中,运输的沉积物集中在河中心周围,而没有显着改变河流形状。如果该理论适合天然河流,那么河流的纵横比可能会成为沉积物排放的代理 - 众所周知,在田间很难测量。

Understanding how rivers adjust to the sediment load they carry is critical to predicting the evolution of landscapes. Presently, however, no physically based model reliably captures the dependence of basic river properties, such as its shape or slope, on the discharge of sediment, even in the simple case of laboratory rivers. Here, we show how the balance between fluid stress and gravity acting on the sediment grains, along with cross-stream diffusion of sediment, determines the shape and sediment flux profile of laminar laboratory rivers which carry sediment as bedload. Using this model, which reliably reproduces the experiments without any tuning, we confirm the hypothesis, originally proposed by Parker (1978), that rivers are restricted to exist close to the threshold of sediment motion (within about 20%). This limit is set by the fluid-sediment interaction and is independent of the water and sediment load carried by the river. Thus, as the total sediment discharge increases, the intensity of sediment flux (sediment discharge per unit width) in a river saturates, and the river can only transport more sediment by widening. In this large discharge regime, the cross-stream diffusion of momentum in the flow permits sediment transport. Conversely, in the weak transport regime, the transported sediment concentrates around the river center without significantly altering the river shape. If this theory holds for natural rivers, the aspect ratio of a river could become a proxy for sediment discharge - a quantity notoriously difficult to measure in the field.

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