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Hydropower intake-induced fish entrainment risk zone analysis

机译:水电摄入诱导的鱼夹带风险区分析

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摘要

Evaluating the impacts of hydropower intake operations on upstream aquatic habitat is important for the development of environmentally sustainable hydropower and flood protection. A computational fluid dynamics model was used to simulate the flow field in the forebay of a high dam, Mica Dam in British Columbia, Canada. The model was used to evaluate the upstream hydraulics under various operational conditions and reservoir levels. This model, which was verified by a novel means of collected acoustic Doppler current profiler field measurements, highlights how appropriate intake selection may limit the volume of the forebay occupied by the entrainment risk zone. Additionally, a potential flow solution was applied to predict the velocity field induced by the intakes and the limitation of the potential flow solution was assessed. By linking the detailed knowledge developed of the forebay hydraulics to the established body of knowledge of fish behaviour, fish habitat use within the entrainment risk zone is also discussed in the context of hydropower optimization.
机译:评估水电取水作业对上游水生栖息地的影响,对于开发环境可持续的水电和防洪具有重要意义。采用计算流体力学模型对加拿大不列颠哥伦比亚省一座高坝——云母坝的前池流场进行了模拟。该模型用于评估各种运行条件和水库水位下的上游水力。该模型通过收集的声学多普勒海流剖面仪现场测量的一种新方法进行了验证,强调了适当的进水口选择可能会限制卷吸风险区占用的前池容积。此外,应用势流解预测进水口引起的速度场,并评估势流解的局限性。通过将前池水力学的详细知识与鱼类行为的既定知识体系联系起来,还将在水电优化的背景下讨论卷吸风险区内的鱼类栖息地使用。

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