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Assessing Potential Removal of Low-Head Dams in Urban Settings: An Example from the Ottawa River, NW Ohio

机译:评估城市环境中低水头大坝的潜在拆除:以俄亥俄州西北部渥太华河为例

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This is a study of the scientific component of an effort to restore an urban river by removing a lowhead dam. The Secor Dam is owned by a local government entity near Toledo, Ohio. The proposed removal of the last structure impeding flow on the Ottawa River has broad appeal, but the owner is concerned about liability issues, particularly potential changes to the flood regime, the presence of contaminated sediments behind the dam, and possible downstream transport of reservoir sediments. Assessing sediment contamination involved sediment sampling and analysis of trace metals and organic contaminants. Forecasting sediment transport involved field methods to determine the volume and textural properties of reservoir and upstream sediment and calculations to determine the fate of reservoir sediments. Forecasting changes in the flood regime involved HEC-RAS hydrological models to determine before and after dam removal flood scenarios using LiDAR data imported into an ArcGIS database. The resulting assessment found potential sediment contamination to be minor, and modeling showed that the removal of the dam would have minimal impacts on sediment transport and flood hazards. Based on the assejsnient, the removal of the dam has been approved by its owners.
机译:这是对通过拆除低水位大坝来恢复城市河流的努力的科学组成部分的研究。 Secor大坝由俄亥俄州托莱多附近的当地政府机构拥有。提议拆除阻碍渥太华河上水流的最后一个结构的提议具有广泛的吸引力,但业主担心责任问题,特别是洪水制度的潜在变化,大坝后部存在受污染的沉积物以及可能向下游输送水库沉积物。评估沉积物污染涉及沉积物采样以及痕量金属和有机污染物的分析。预测沉积物的运移涉及现场方法,以确定储层和上游沉积物的体积和质地特性,并进行计算以确定储层沉积物的命运。预测洪水情势变化涉及HEC-RAS水文模型,以使用导入ArcGIS数据库的LiDAR数据确定大坝拆除前后的洪水情况。评估结果发现潜在的泥沙污染很小,建模显示,拆除大坝对泥沙运输和洪水危害的影响最小。基于资产评估,水坝的拆除已得到其所有者的批准。

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