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Providing Aquatic Organism Passage in Vertically Unstable Streams

机译:在垂直不稳定的河流中提供水生生物通道

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Aquatic organism passage barriers have been identified as one of the key impediments to recovery of salmonids and other migratory aquatic organisms in the Pacific Northwest of the United States. As such, state and federal agencies invest millions of dollars annually to address passage barriers. Because many barriers function as ad hoc grade control structures, their removal and/or replacement can unwittingly set off a cascade of effects that can negatively impact the very habitat and passage that project proponents seek to improve. The resultant vertical instability can result in a suite of effects that range from floodplain disconnection and loss of backwater and side channel habitat, to increased levels of turbidity. Risk assessment, including an evaluation of both the stage of stream evolution and a longitudinal profile analysis, provides a framework for determining if grade control is warranted, and if so, what type of structure is most geomorphically appropriate. Potential structures include placement of large wood and roughness elements, and constructed riffles, step-pools, and cascades. The use of structure types that mimic natural reach scale geomorphic analogues should result in improved aquatic organism passage, increased structural resilience, and reduced maintenance.
机译:在美国西北太平洋地区,水生生物通过障碍已被确定为恢复鲑鱼和其他迁徙水生生物的主要障碍之一。因此,州和联邦机构每年投资数百万美元来解决通行障碍。由于许多障碍物充当临时等级控制结构,因此它们的去除和/或替换会无意间引发一系列影响,这些负面影响会对项目支持者寻求改善的栖息地和通道产生负面影响。由此产生的垂直不稳定性会导致一系列影响,从洪泛区断开连接,死水和侧沟栖息地的丧失到浊度的增加。风险评估(包括对河流演化阶段和纵向剖面分析的评估)提供了一个框架,用于确定是否需要进行坡度控制,如果需要,则确定哪种结构最适合地貌。潜在的结构包括放置大型木材和粗糙度元素,以及构造的浅滩,阶梯式水池和小瀑布。模拟自然范围尺度的地貌类似物的结构类型的使用应导致改善水生生物的通过,增加结构的弹性并减少维护。

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