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Extreme sediment pulses generated by bend cutoffs along a large meandering river

机译:沿着一条蜿蜒曲折的河流的弯曲截流产生的极端沉积物脉冲

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In meandering rivers, bend cutoffs have long been recognized as an important mechanism of change in the path of the channel. Meander bend cutoffs can develop by the progressive migration of an elongated bend onto itself, which forms a neck cutoff, or by the erosion of a new channel across the neck of the bend, which is known as a chute cutoff. River cutoffs affect channel navigation~2, and form meander scars and oxbow lakes in river floodplains 1,3,4, which are important habitats for riparian ecosystems ~5. The importance of cutoff processes in meander dynamics is well established1,3,4,6-8, but the effects of cutoffs on overall sediment flux are poorly characterized. Here we use aerial imagery, global positioning system mapping and measurements of channel bathymetry to estimate the amount of sediment released by two chute cutoffs on the Wabash River in the Midwestern USA. We find that each event triggered the rapid delivery of sediment into the river, at rates that are one to five orders of magnitude larger than those produced by lateral migration of individual bends. We find that much of this material was deposited immediately downstream, at the confluence of the Wabash and Ohio rivers, which led to significant changes in channel morphology. This sedimentation ultimately impeded barge traffic and necessitated extensive dredging.
机译:在蜿蜒的河流中,弯曲截断一直被认为是河道变化的重要机制。曲折弯截断可通过将细长弯头逐渐移至自身而形成颈部截断,或通过侵蚀整个弯道颈部的新通道而形成,这称为斜槽截断。河流截流影响河道通航〜2,并在河漫滩1、3、4中形成曲折的疤痕和牛弓湖,这是河岸生态系统的重要栖息地〜5。截止过程在曲流动力学中的重要性已得到很好的证明[1,3,4,6-8],但是截止对沉积物总通量的影响的表征却很差。在这里,我们使用航空影像,全球定位系统地图以及航道测深法的测量来估算美国中西部瓦巴什河上两个溜槽截流所释放的泥沙量。我们发现,每个事件都触发了泥沙向河流的快速输送,其速率比各个弯道的横向迁移所产生的速率大了1-5个数量级。我们发现,大部分这种物质在瓦巴什河和俄亥俄州河的汇合处直接沉积在下游,这导致河道形态发生重大变化。这种沉积最终阻碍了驳船的通行,并导致了大规模的疏ging。

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