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Upstream Hydraulics of a Run-of-the River Hydropower Facility for Fish Entrainment Risk Assessment

机译:上游河道水电设施的水力学,用于夹带鱼的风险评估

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Run-of-the-river hydropower is a typical form of power generation in mountainous regions. This study investigates the velocity field upstream of Aberfeldie dam, a run-of-the river facility on the Bull River near Wardner, British Columbia, Canada. As is typical for these types of run-of-the river facilities, the headpond of this dam is very shallow (approximately 1m deep) because of long term sediment deposition. Near the facility's power intakes, a large scour hole has been created because of increased velocities induced by the intakes. This study conducted field measurements and developed a computational fluid dynamic (CFD) model to investigate the velocity field under various flow conditions. The CFD solver shows in a simplistic way that flow-induced bed shear stress likely causes a fluctuating, dynamic bed form that varies by season and the distance upstream, so that a consistent velocity pattern is seen across the entire headpond. The velocity field generated by the CFD solver is used to evaluate the entrainment risk of mountain whitefish and westslope cutthroat trout based on swimming mechanics and life stage. The unique habitat conditions generated by the scour hole act as an attractant to the high risk zone, greatly increasing fish density adjacent to the intakes at this facility.
机译:奔流水力发电是山区的一种典型发电方式。这项研究调查了位于加拿大不列颠哥伦比亚省沃德纳附近的布尔河上的一条河道设施-阿伯费尔迪大坝上游的速度场。正如这些类型的河道设施的典型情况一样,由于长期的沉积物沉积,该水坝的水头很浅(约1m深)。在设施的动力入口附近,由于进气引起的速度增加,已经形成了一个大的冲刷孔。这项研究进行了现场测量,并开发了计算流体动力学(CFD)模型来研究各种流动条件下的速度场。 CFD解算器以一种简单的方式显示了流动引起的床层剪切应力很可能会导致波动的动态床层形式,该形式随季节和上游距离而变化,因此在整个水头池中都可以看到一致的速度模式。 CFD解算器生成的速度场用于根据游泳力学和生命阶段评估山白鱼和西坡s鱼鳟鱼的夹带风险。冲刷孔产生的独特栖息地条件吸引了高风险区,极大地增加了该设施附近的鱼类密度。

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