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Mortality of silver eels migrating through different types of hydropower turbines in Lithuania

机译:立陶宛通过不同类型水轮机迁移的银鳗的死亡率

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Hydropower plants (HPP) are considered to be one of the major threats to the survival of European eels when they migrate downstream along inland water bodies during the early part of their annual journey to the spawning area in the Sargasso Sea. There are 98 HPPs in Lithuania and thousands throughout Europe. Numerous studies describe HPP induced mortality rates among European eels as variable depending on local, environmental, and technical factors. This heterogeneity in effect complicates theoretical extrapolation to eel mortality arising from specific types of HPP, necessary for effective management of local stocks. Silver eel mortality was estimated for 4 different HPPs in Lithuania. Mortality was estimated using RFID (Radio Frequency Identification, passive integrated transponders) tags and acoustic telemetry in a large HPP (>100 MW) with Kaplan turbines, a small HPP (<1 MW) with a Kaplan turbine and a fish passage, and for the first time in two small HPPs (<1 MW) with CINK turbines. The results supported a hypothesis that the mortality rate of migrating eels depends mainly on the type and size of the turbine. HPP induced mortality varied from 100% in a small CINK turbine down to 25% in the large HPP with Kaplan turbines. The importance of simple mitigation measures was highlighted by 34% of all tagged eels bypassing one of the HPP via an adjacent fish passage constructed for upstream migration of salmonids. The observed differences in mortality provide essential information for long term strategies designed to restore depleted eel populations in Lithuania and other European countries.
机译:水力发电厂(HPP)被认为是欧洲鳗鱼生存的主要威胁之一,当它们在年度旅程的早期部分沿内陆水体向下游迁移到Sargasso海的产卵区时,便会受到威胁。立陶宛有98个HPP,整个欧洲有数千个。大量研究表明,欧洲鳗鱼中HPP诱发的死亡率因地区,环境和技术因素而异。这种异质性实际上使对特定种类的HPP引起的鳗鱼死亡率的理论推断复杂化,这是有效管理当地种群所必需的。在立陶宛,估计了4种不同HPP的银鳗死亡率。在配备Kaplan涡轮的大型HPP(> 100 MW),配备Kaplan涡轮和鱼通道的小型HPP(<1 MW)中,使用RFID(射频识别,无源集成应答器)标签和声学遥测技术估算死亡率。首次使用CINK涡轮机在两个小型HPP(<1 MW)中进行。结果支持一个假说,即迁移的鳗鱼的死亡率主要取决于涡轮机的类型和大小。 HPP诱发的死亡率从小型CINK涡轮机中的100%下降到使用Kaplan涡轮机的大型HPP中的25%。 34%的所有标记鳗鱼通过为鲑鱼向上游迁移而建造的相邻鱼道绕过HPP之一,突显了简单缓解措施的重要性。观察到的死亡率差异为旨在恢复立陶宛和其他欧洲国家的鳗鱼种群枯竭的长期策略提供了重要信息。

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