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Landscape assessment of side channel plugs and associated cumulative side channel attrition across a large river flood plain

机译:整个大河漫滩中侧渠塞的景观评估和相关的累积侧渠损耗

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Determining the influences of anthropogenic perturbations on side channel dynamics in large rivers is important from both assessment and monitoring perspectives because side channels provide critical habitat to numerous aquatic species. Side channel extents are decreasing in large rivers worldwide. Although riprap and other linear structures have been shown to reduce side channel extents in large rivers, we hypothesized that small "anthropogenic plugs" (flow obstructions such as dikes or berms) across side channels modify whole-river geomorphology via accelerating side channel senescence. To test this hypothesis, we conducted a geospatial assessment, comparing digitized side channel areas from aerial photographs taken during the 1950s and 2001 along 512 km of the Yellowstone River floodplain. We identified longitudinal patterns of side channel recruitment (created/enlarged side channels) and side channel attrition (destroyed/senesced side channels) across n = 17 river sections within which channels were actively migrating. We related areal measures of recruitment and attrition to the density of anthropogenic side channel plugs across river sections. Consistent with our hypothesis, a positive spatial relationship existed between the density of anthropogenic plugs and side channel attrition, but no relationship existed between plug density and side channel recruitment. Our work highlights important linkages among side channel plugs and the persistence and restoration of side channels across floodplain landscapes. Specifically, management of small plugs represents a lowcost, high-benefit restoration opportunity to facilitate scouring flows in side channels to enable the persistence of these habitats over time.
机译:从评估和监测的角度来看,确定人为干扰对大型河流侧流动力学的影响非常重要,因为侧流通道为众多水生物种提供了重要的栖息地。在世界范围内的大河中,侧河道的范围正在减少。尽管在大河中riprap和其他线性结构已显示出可减少侧河道的范围,但我们假设跨侧河道的小“人为堵塞”(堤坝或堤坝等水流阻塞)通过加速侧河道衰老来改变整个河道的地貌。为了验证这一假设,我们进行了地理空间评估,比较了黄石河漫滩512公里处1950年代和2001年期间拍摄的航拍照片中的数字化侧航道面积。我们确定了n = 17条河道中河道正在积极迁移的边河招募(建立/扩大的河道)和河道损耗(破坏/衰落的河道)的纵向模式。我们将募集和减员的面积测度与跨河段的人为侧河道塞的密度相关。与我们的假设一致,人为塞的密度与侧通道损耗之间存在正空间关系,而塞密度与侧通道募集之间不存在关系。我们的工作突出了侧向河道堵塞之间的重要联系,以及整个洪泛区景观中侧向河道的持久性和恢复性。具体而言,小栓塞的管理代表了低成本,高效益的恢复机会,以促进侧通道中的冲刷流,从而使这些栖息地随时间而持久。

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