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幼鲑鱼在通过水轮机或幼鱼旁路系统之前,在水电大坝前湾的洄游深度和停留时间:对通过水轮机生存的影响。

Migration depth and residence time of juvenile salmonids in the forebays of hydropower dams prior to passage through turbines or juvenile bypass systems: implications for turbine-passage survival.

作者信息

Li Xinya, Deng Zhiqun D, Brown Richard S, Fu Tao, Martinez Jayson J, McMichael Geoffrey A, Skalski John R, Townsend Richard L, Trumbo Bradly A, Ahmann Martin L, Renholds Jon F

机构信息

Pacific Northwest National Laboratory, Hydrology Group, 3320 Innovation Boulevard, PO Box 999, MSIN K9-33, Richland, WA 99352, USA.

Pacific Northwest National Laboratory, Ecology Group, 3320 Innovation Boulevard, PO Box 999, MSIN K7-70, Richland, WA 99352, USA.

出版信息

Conserv Physiol. 2015 Feb 3;3(1):cou064. doi: 10.1093/conphys/cou064. eCollection 2015.

Abstract

Little is known about the three-dimensional depth distributions in rivers of individually marked fish that are in close proximity to hydropower facilities. Knowledge of the depth distributions of fish approaching dams can be used to understand how vulnerable fish are to injuries such as barotrauma as they pass through dams. To predict the possibility of barotrauma injury caused by pressure changes during turbine passage, it is necessary to understand fish behaviour relative to acclimation depth in dam forebays as they approach turbines. A guiding study was conducted using high-resolution three-dimensional tracking results of salmonids implanted with Juvenile Salmon Acoustic Telemetry System transmitters to investigate the depth distributions of subyearling and yearling Chinook salmon (Oncorhynchus tshawytscha) and juvenile steelhead (Oncorhynchus mykiss) passing two dams on the Snake River in Washington State. Multiple approaches were evaluated to describe the depth at which fish were acclimated, and statistical analyses were performed on large data sets extracted from ∼28 000 individually tagged fish during 2012 and 2013. Our study identified patterns of depth distributions of juvenile salmonids in forebays prior to passage through turbines or juvenile bypass systems. This research indicates that the median depth at which juvenile salmonids approached turbines ranged from 2.8 to 12.2 m, with the depths varying by species/life history, year, location (which dam) and diel period (between day and night). One of the most enlightening findings was the difference in dam passage associated with the diel period. The amount of time that turbine-passed fish spent in the immediate forebay prior to entering the powerhouse was much lower during the night than during the day. This research will allow scientists to understand turbine-passage survival better and enable them to assess more accurately the effects of dam passage on juvenile salmon survival.

摘要

对于靠近水电设施的、带有个体标记的鱼类在河流中的三维深度分布情况,我们了解甚少。了解接近大坝的鱼类的深度分布,有助于我们理解鱼类在通过大坝时遭受诸如气压伤等伤害的脆弱程度。为了预测涡轮机通道中压力变化导致气压伤的可能性,有必要了解鱼类在接近涡轮机时,相对于大坝前池适应深度的行为。我们开展了一项指导性研究,利用植入幼鲑声学遥测系统发射器的鲑科鱼类的高分辨率三维跟踪结果,调查了华盛顿州蛇河上两座大坝处,当年幼鲑和一岁奇努克鲑(Oncorhynchus tshawytscha)以及幼年虹鳟(Oncorhynchus mykiss)的深度分布。我们评估了多种方法来描述鱼类适应的深度,并对2012年和2013年从约28000条个体标记鱼中提取的大数据集进行了统计分析。我们的研究确定了幼年鲑科鱼类在通过涡轮机或幼年旁路系统之前在前池中的深度分布模式。这项研究表明,幼年鲑科鱼类接近涡轮机的中位深度在2.8至12.2米之间,深度因物种/生活史、年份、位置(哪座大坝)以及昼夜时段(白天和夜晚之间)而异。最具启发性的发现之一是与昼夜时段相关的大坝通道差异。夜间通过涡轮机的鱼在进入发电站之前在前池附近停留的时间比白天短得多。这项研究将使科学家能够更好地了解通过涡轮机通道的存活率,并使他们能够更准确地评估大坝通道对幼年鲑鱼存活率的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/096b/4778447/0f604c24d148/cou06401.jpg

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