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首页> 外文期刊>Journal of the American Water Resources Association >EVOLVING EXPECTATIONS OF DAM REMOVAL OUTCOMES: DOWNSTREAM GEOMORPHIC EFFECTS FOLLOWING REMOVAL OF A SMALL, GRAVEL-FILLED DAM
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EVOLVING EXPECTATIONS OF DAM REMOVAL OUTCOMES: DOWNSTREAM GEOMORPHIC EFFECTS FOLLOWING REMOVAL OF A SMALL, GRAVEL-FILLED DAM

机译:大坝拆除结果的不断发展的期望:拆除小碎石坝后的下游地貌效应

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摘要

Dam removal is a promising river restoration technique, particularly for the vast number of rivers impounded by small dams that no longer fulfill their intended function. As the decommissioning of small dams becomes increasingly commonplace in the future, it is essential that decisions regarding how and when to remove these structures are informed by appropriate conceptual ideas outlining potential outcomes. To refine predictions, it is necessary to utilize information from ongoing dam removal monitoring to evolve predictive tools, including conceptual models. Following removal of the Brownsville Dam from the Calapooia River, Oregon, aquatic habitats directly below the dam became more heterogeneous over the short term, whereas changes further downstream were virtually undetectable. One year after dam removal, substrates of bars and riffles within 400 m downstream of the dam coarsened and a dominance of gravel and cobble sediments replaced previously hardpan substrate. New bars formed and existing bars grew such that bar area and volume increased substantially, and a pool-riffle structure formed where plane-bed glide formations had previously dominated. As the Brownsville Dam stored coarse rather than fine sediments, outcomes following removal differ from results of many prior dam removal studies. Therefore, we propose a refined conceptual model describing downstream geomorphic processes following small dam removal when upstream fill is dominated by coarse sediments.
机译:拆除大坝是一种很有前途的河流修复技术,特别是对于由不再履行其预期功能的小型水坝所包围的大量河流。随着小型水坝的退役在未来变得越来越普遍,至关重要的是,有关概述如何和何时拆除这些结构的决定应以概述潜在成果的适当概念性想法为依据。为了完善预测,有必要利用正在进行的大坝拆除监控中的信息来发展包括概念模型在内的预测工具。从俄勒冈州的卡拉普瓦河上拆除布朗斯维尔大坝后,大坝正下方的水生生境在短期内变得更加异质,而下游的变化实际上是无法察觉的。拆除大坝一年后,大坝下游400 m内的条形和浅滩基底变粗,砾石和卵石沉积物的优势取代了以前的硬盘基底。形成了新的杆并增加了现有的杆,使得杆的面积和体积显着增加,并且形成了以前由平面滑行形成占主导地位的水池浅滩结构。由于布朗斯维尔大坝存储的是较粗而不是较细的沉积物,因此拆除后的结果与许多先前的拆除研究结果不同。因此,我们提出了一个精炼的概念模型,该模型描述了当上游填充物以较粗的沉积物为主时,小坝拆除后的下游地貌过程。

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