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首页> 外文期刊>North American Journal of Fisheries Management >Screen Efficiency and Implications for Losses of Lamprey Macrophthalmia at California's Largest Water Diversions
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Screen Efficiency and Implications for Losses of Lamprey Macrophthalmia at California's Largest Water Diversions

机译:加州最大的水分流兰普雷麦芽糖疟原虫损失的筛选效率和影响

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We investigated the guidance efficiency of fish screens for the protection of emigrating Pacific Lamprey Entosphenus tridentatus and Western River Lamprey (also known as River Lamprey) Lampetra ayresii in a series of experimental trials. All trials were conducted at the Tracy Fish Collection Facility, located in the Sacramento-San Joaquin River Estuary at the entrance to one of the world's largest surface water diversions. Using 1,200 lamprey macrophthalmia, we tested for the effect of screen type, time of day, and channel water velocity to guide their swimming behavior to avoid entrainment. We found overwhelming evidence for an effect of screen type on efficiency, whereby all lampreys were successfully guided to a holding tank when a vertical traveling screen was used. This was likely due to the small pore size of the screen relative to lamprey sizes. In contrast, the efficiency of louvers, a behavioral screen designed for salmonids, varied by the interaction of time of day and channel velocity. During nighttime, when lamprey typically emigrate, louver guidance efficiency ranged from 21% (95% CI, 14-30%) to 24% (95% CI, 16-34%). These results were applied to estimate the probability for salvage of lamprey macrophthalmia at the Tracy Fish Collection Facility, which includes a two-stage fish screen design. Between 1957 and 2014, we estimated that 94-96% of the lampreys that were entrained in the export flows were lost and not returned to the delta. However, the probability for fish loss was reduced in 2014 when the secondary louver was replaced with a vertical traveling screen. Our results suggest that lamprey macrophthalmia entrainment into the canals will be eliminated at the Tracy Fish Collection Facility if the primary screen is converted to vertical traveling screen. Surface water diversions may represent a substantial threat to regional metapopulations of anadromous lamprey species worldwide, and screening approaches applied to other fish species such as salmonids may not be protective of lampreys.
机译:我们调查了鱼屏的指导效率,以保护移民Pacific Lamprepy Entophenus Tripentatus Tripentatus和Western River Lamprehe(也称为River Lamprey)Lampetra Ayresii在一系列的实验试验中。所有试验均在Tracy Fish Collection设施进行,位于萨克拉门托 - 圣Joaquin河口,位于世界上最大的地表水分流之一的入口处。使用1,200只Lamprepy Macrophthalmia,我们测试了屏幕类型,一天的时间和沟道水速度的影响,以引导他们的游泳行为以避免夹带。我们发现屏幕类型对效率的影响的压倒性证据,即在使用垂直行进屏幕时,所有Lampreys都成功地被引导到保持罐。这可能是由于屏幕相对于薄片尺寸的小孔径。相比之下,百叶窗的效率,为鲑鱼设计的行为屏幕,通过白天时间和通道速度的相互作用而变化。在夜间期间,当百叶小宏术时,百叶窗引导效率范围为21%(95%CI,14-30%)至24%(95%CI,16-34%)。这些结果用于估算Tracy Firs Collection设施在Tracy Fircophthalmia的裂解概率,包括两级鱼屏设计。在1957年至2014年期间,我们估计,94-96%征收出口流量的Lampreys丢失,而不是返回三角洲。然而,2014年在用垂直行驶屏幕替换二次百叶窗时减少了鱼类损失的概率。我们的研究结果表明,如果主屏幕转换为垂直行驶屏幕,则将在Tracy Fish Collection设施中删除Lamprey Macrophthalmia夹带。表面调水转移可能代表全球赤脂菌落物种的区域性化学造成的重大威胁,应用于诸如鲑鱼等其他鱼类的筛查方法可能不会保护Lampreys。

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