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Key hydraulic drivers and patterns of fine sediment accumulation in gravel streambeds: A conceptual framework illustrated with a case study from the Kiewa River, Australia

机译:关键的水力驱动因素和砾石河床中的细沙沉积模式:以澳大利亚基瓦河为例的概念框架说明

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摘要

Fine sediment processes in gravel beds may have significant impacts to overall river ecosystem function. In addition to gravitational deposition, horizontal intragravel transport has been recognized to influence fine sediment accumulation. However, the specific hydraulic mechanisms and origin of fine sediment movement are not clearly identified. The purpose of this study was to investigate key hydraulic drivers and patterns of fine sediment accumulation. Using a conceptual framework to set the scene, we implemented an experimental setup in a gravel lateral bar subject to irregular flow fluctuations in the Kiewa River (Australia). We installed nine sets of sediment collector pairs and piezometers into the gravel. Each pair included one horizontally and one horizontally-vertically perforated collector. Mid-range, rather than peak flows, covering the site in water drove fine sediment deposited in the collectors. We estimated horizontal contribution to final deposition as 59%. Such contribution resulted from shear stresses > 3 N m− 2 promoting streamwise near-bed turbulence at the water-sediment interface during flooded conditions. Despite high subsurface hydraulic gradients, intragravel transport in the lower sediment layers via Darcy flow did not show any influence to fine sediment deposition. Our findings contribute to an improved understanding of fine sediment accumulation processes, key for overall river ecosystem functioning, particularly in regulated rivers.
机译:砾石床中的细沙沉积过程可能对河流整体生态系统功能产生重大影响。除重力沉积外,水平砾石内部的运输也被认为会影响精细的沉积物堆积。但是,具体的水力机制和细小泥沙运动的起因尚不清楚。这项研究的目的是调查关键的水力驱动器和细沙沉积的模式。使用概念框架设置场景,我们在砾石侧杆上实施了实验设置,该设置受制于Kiewa河(澳大利亚)中不规则的流量波动。我们在砾石中安装了九对沉积物收集器和压力计。每对包括一个水平和一个垂直穿孔的收集器。覆盖水位的中部而不是峰值流量驱使沉积在收集器中的细小泥沙。我们估计对最终沉积的水平贡献为59%。这种贡献是由于> 3 N m-2的剪应力在淹没条件下促进了水-沉积物界面在水流附近的湍流。尽管地下水力梯度高,但通过达西流在下部沉积层中的砾石内部输运对精细的沉积物沉积没有显示出任何影响。我们的发现有助于增进对精细沉积物沉积过程的理解,这是整个河流生态系统功能的关键,尤其是在管制河流中。

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