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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Protecting efficiently sea-migrating salmon smolts from entering hydropower plant turbines with inclined or oriented low bar spacing racks
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Protecting efficiently sea-migrating salmon smolts from entering hydropower plant turbines with inclined or oriented low bar spacing racks

机译:通过倾斜或定向的低条间距架进入水电厂涡轮机的高效海面迁移鲑鱼熔体

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摘要

Restoring the longitudinal connectivity of rivers is becoming a conservation priority in countries with high hydroelectric plant (HEP) development. Newly designed downstream passage solutions for fish are being installed in small and medium-sized HEPs in France, and an accurate evaluation of their functionality is needed. Here we addressed the efficiency of protection systems for the downstream migration of Atlantic salmon smolts a four HEPs (three 26 degrees horizontally inclined racks and one 15 degrees oriented to the flow rack in the bank alignment, all with 20 mm spaced bars). Between 239 and 300 hatchery-reared salmon smolts were PIT-tagged and released in 5-6 groups 100 m upstream of each studied HEP. Their passages through the HEPs were detected with radio frequency identification (RFID) antenna in the bypasses for downstream migration and the fish passes for upstream migration. On average between 82.8% and 92.3% of released smolts successfully passed the HEP through one of the two non-turbine routes. Resulting mean bypass passage efficiency ranged from 80.9 to 87.5% and all fish groups reached over 70% passage efficiency. Excepting one she, 50% of smolts passed through the bypass in less than 23 min after release, and 75% of them in less than 2 h 15 min. Combining our findings with previously estimated fish entrainment rates into the intake channel and turbine-related mortality rates, we assessed the overall fish survivals a the studied dam/HEPs which are between 98.24% and near 100%. Our results confirm recommended design criteria for inclined and oriented racks and the interest of the tested devices for the protection of downstream migrating salmon smolts.
机译:恢复河流的纵向连接正在成为高水力发电(HEP)开发的国家的保守优先级。新设计的鱼类下游通道解决方案正在法国中小型和中型HEP中安装,需要准确评估其功能。在这里,我们解决了大西洋鲑鱼下游迁移的保护系统的效率,它味道四HEP(326度水平倾斜的架子,并且在银行对准中定向到流动架的一个15度,都具有20mm间隔的条形。在239和300个孵化场饲养的鲑鱼熔渣之间是坑标记的,并在5-6组中释放,每次学习HEP的上游。在旁路中,通过射频识别(RFID)天线检测到其通道,用于下游迁移,鱼类通过上游迁移。平均介于82.8%和92.3%的释放泡沫通过两个非涡轮机路线中的一个成功通过了HEP。导致平均旁路通道效率从80.9%到87.5%,所有鱼群均达到70%以上的通道效率。除了一个她,在释放后不到23分钟的旁路通过旁路通过50%,其中75%在不到2小时15分钟。将我们的调查结果与先前估计的鱼夹带率相结合,进入进气通道和涡轮机相关的死亡率,我们评估了整个鱼类幸存者A的学习坝/肝脏,在98.24%和接近100%之间。我们的成果确认了推荐的倾斜和面向机架的设计标准以及测试设备保护下游迁移鲑鱼的兴趣。

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