Factors affecting powerhouse passage of spring migrant smolts at federally operated hydroelectric dams of the Snake and Columbia rivers

IF 1.9 2区 农林科学 Q2 FISHERIES
Ryan A. Harnish, Kenneth D. Ham, John R. Skalski, Richard L. Townsend, Rebecca A. Buchanan
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引用次数: 0

Abstract

From 2008–2018, acoustic telemetry studies were conducted to evaluate dam passage survival of spring migrant Chinook salmon and steelhead smolts at 7 of the 8 federally operated dams on the lower Snake and Columbia rivers. Data from over 87,000 dam passage events were evaluated using regression modeling to identify the effect of spill operations, environmental conditions, and fish characteristics on powerhouse passage probability. In general, powerhouse passage was positively correlated with discharge, negatively correlated with forebay temperature and fish size, and higher for fish that passed the dam at night and for those that approached from the powerhouse side of the river, suggesting powerhouse passage is largely a function of smolt activity level and swimming ability. As such, spilling large volumes of water to reduce powerhouse passage is likely to be most effective during times of reduced activity and swimming ability (e.g., at night, high flows, cold temperatures). This information can be used to develop dam- and time-specific spill operations that optimize smolt passage, power generation, and other competing demands, such as adult passage.
影响春季洄游幼鱼在斯内克河和哥伦比亚河的联邦水电站通过的因素
从2008年到2018年,在Snake河和Columbia河下游的8座联邦运营的水坝中,有7座进行了声学遥测研究,以评估春季迁徙的奇努克鲑鱼和钢头幼崽的大坝通道存活率。使用回归模型评估了来自87,000多个大坝通过事件的数据,以确定泄漏操作,环境条件和鱼类特征对发电站通过概率的影响。总体而言,工房通道与流量呈正相关,与前湾温度和鱼体大小呈负相关,夜间过坝的鱼和从工房侧靠近的鱼越高,说明工房通道主要是幼鱼活动水平和游泳能力的函数。因此,在活动和游泳能力减弱的时候(例如,在夜间,高流量,低温),溢出大量的水来减少动力通道可能是最有效的。这些信息可用于开发大坝和特定时间的泄漏操作,以优化小渗漏通道、发电和其他竞争需求,如成人通道。
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来源期刊
Canadian Journal of Fisheries and Aquatic Sciences
Canadian Journal of Fisheries and Aquatic Sciences 农林科学-海洋与淡水生物学
CiteScore
4.60
自引率
12.50%
发文量
148
审稿时长
6-16 weeks
期刊介绍: The Canadian Journal of Fisheries and Aquatic Sciences is the primary publishing vehicle for the multidisciplinary field of aquatic sciences. It publishes perspectives (syntheses, critiques, and re-evaluations), discussions (comments and replies), articles, and rapid communications, relating to current research on -omics, cells, organisms, populations, ecosystems, or processes that affect aquatic systems. The journal seeks to amplify, modify, question, or redirect accumulated knowledge in the field of fisheries and aquatic science.
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