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Simulation and control of morphological changes due to dam removal in the Sandy River, Oregon, USA

机译:美国沙地河坝拆除因坝体的形态变化的模拟与控制

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A one-dimensional channel evolution simulation model (CCHE1D) is applied to assess morphological changes in a reach of the Sandy River, Oregon, USA, due to the Marmot Dam removal in 2007. Sediment transport model parameters (e.g. sediment transport capacity, bed roughness coefficient) were calibrated using observed bed changes after the dam removal. The validated model is then applied to assess long-term morphological changes in response to a 10-year hydrograph selected from historical storm water records. The long-term assessment of sedimentation gives a reasonable prediction of morphological changes, expanding erosion in reservoir and growing deposition immediately downstream of the dam site. This prediction result can be used for managing and planning river sedimentation after dam removal. A simulation-based optimization model is also applied to determine the optimal sediment release rates during dam-removal that will minimize the morphological changes in the downstream reaches.
机译:应用一维信道演化模拟模型(CCHE1D)以评估美国戴尔代尔,美国陆地河流的形态变化,由于2007年的土拨鼠坝移除。沉积物运输模型参数(例如沉积物输送能力,床粗糙度在坝移除后,使用观察到的床变化进行校准系数。然后应用验证的模型以评估从历史风暴水记录中选择的10年的水文编程的长期形态变化。沉淀的长期评估具有合理的形态变化预测,在坝址下游储存器中的侵蚀和越来越沉积。这种预测结果可用于坝移除后的管理和规划河流沉降。还应用了一种基于仿真的优化模型来确定滤音期间的最佳沉积物释放速率,从而最小化下游到达的形态变化。

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