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首页> 外文期刊>Energies >Fish Passage Assessment of an Advanced Hydropower Turbine and Conventional Turbine Using Blade-Strike Modeling
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Fish Passage Assessment of an Advanced Hydropower Turbine and Conventional Turbine Using Blade-Strike Modeling

机译:先进的水力涡轮机和常规涡轮机的鱼道评估,采用叶片冲击模型

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摘要

Hydropower is the largest renewable energy source in the world. However, in the Columbia and Snake River basins, several species of Pacific salmon and steelhead have been listed for protection under the Endangered Species Act due to significant declines of fish population. Dam operators and design engineers are thus faced with the task of making hydroelectric facilities more fish friendly through changes in hydro-turbine design and operation. Public Utility District No. 2 of Grant County, Washington, applied for relicensing from the U.S. Federal Energy Regulatory Commission to replace the 10 turbines at Wanapum Dam with advanced hydropower turbines that were designed to increase power generation and improve fish passage conditions. We applied both deterministic and stochastic blade-strike models to compare fish passage performance of the newly installed advanced turbine to an existing turbine. Modeled probabilities were compared to the results of a large-scale live-fish survival study and a Sensor Fish study under the same operational parameters. Overall, injury rates predicted by the deterministic model were higher than experimental rates of injury, while those predicted by the stochastic model were in close agreement with experimental results. Fish orientation at the time of entry into the plane of the leading edges of the turbine runner blades was an important factor contributing to uncertainty in modeled results. The advanced design turbine had slightly higher modeled injury rates than the existing turbine design; however, no statistical evidence suggested significant differences in blade-strike injuries between the two turbines, thus the hypothesis that direct fish survival rate through the advanced hydropower turbine is equal to or higher than that for fish passing through the conventional turbine could not be rejected.
机译:水电是世界上最大的可再生能源。但是,由于鱼类种群的大量减少,在《濒危物种法》中,在哥伦比亚河和斯内克河流域,几种太平洋鲑鱼和硬头鱼已被列为保护物种。因此,大坝运营商和设计工程师面临着通过改变水轮机设计和运行使水力发电设施对鱼类更友好的任务。华盛顿格兰特县2号公用事业区已向美国联邦能源管理委员会申请许可证,以用先进的水力涡轮机替换Wanapum大坝的10台涡轮机,这些涡轮机旨在增加发电量并改善鱼类通过条件。我们使用确定性和随机叶片打击模型来比较新安装的先进涡轮机和现有涡轮机的鱼通过性能。将模拟的概率与在相同操作参数下的大型活鱼生存研究和传感器鱼研究的结果进行比较。总体而言,确定性模型预测的伤害率高于实验伤害率,而随机模型预测的伤害率与实验结果非常吻合。进入涡轮机叶轮前缘平面时的鱼方位是导致建模结果不确定的重要因素。先进设计的涡轮机的模型损伤率比现有涡轮机设计略高。然而,没有统计证据表明这两个涡轮之间的叶片撞击损伤有显着差异,因此无法拒绝通过先进水力涡轮的直接鱼类生存率等于或高于通过常规涡轮的鱼类的生存率这一假设。

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