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首页> 外文期刊>Ecology of Freshwater Fish >Behaviour of endangered European eels in proximity to a dam during downstream migration: Novel insights using high accuracy 3D acoustic telemetry
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Behaviour of endangered European eels in proximity to a dam during downstream migration: Novel insights using high accuracy 3D acoustic telemetry

机译:下游迁移期间濒危欧洲鳗鱼鳗的行为:使用高精度3D声学遥测的新颖见解

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River infrastructures such as weirs, hydropower stations or water reservoirs represent obstructions to migration for diadromous fish. Knowledge of accurate behaviour of fish in front of such structures is required to protect migrants from hazardous areas, guide them towards safe passage or adapt structure to improve the escapement. We developed and made available a method to process acoustic telemetry data based on Time Difference Of Arrival analysis to accurately locate tagged fish. Improved accuracy allows the detection of escape routes and description of dam-crossing tactics. Sixteen tagged eels were tracked with high accuracy (1-2 m) and similar to 1 location min(-1) frequency during their exploration period on reaching the dam. Two migration routes (spillways and bottom compensation flow pipe) were used by 77% and 23% of eels respectively. Spillways were the preferred route, but a median of 16 days were required to pass the dam versus 1.1 days via the compensation pipe. A minimal water crest of 40 cm was required for passage via spillways. Eels passing through the compensation pipe were exclusively nocturnal and mainly explored the bottom of the dam. Eels passing through spillways explored the whole dam area by night and day, and were not attracted to the compensation pipe entrance. With global warming, more frequent drought periods are expected, potentially leading to decreased opportunities for eels to migrate across safer dams by spillways. To conserve this endangered species, dam management strategies that account for expected hydrologic conditions and distinct exploration behaviours are needed.
机译:堰,水电站或水库等河流基础设施代表了对黄昏鱼迁移的障碍物。需要了解在这些结构前面的鱼类准确行为,以保护来自危险区域的移民,引导它们朝向安全通道或适应结构以改善擒纵机构。我们开发并提供了一种用于根据到达分析的时间差来处理声学遥测数据的方法,以准确定位被标记的鱼类。提高的精度允许检测逃生路线和大坝交叉策略的描述。在到达大坝的勘探期间,以高精度(1-2米)跟踪16个标记的鳗鱼,并类似于1个位置MIN(-1)频率。两个迁移路线(溢出道和底部补偿流量管)分别使用77%和23%的鳗鱼使用。溢洪道是首选的路线,但是通过补偿管道将大坝与1.1天相比,需要16天的中位数。通过溢洪道,通过泄漏需要40厘米的最小水嵴。通过补偿管的鳗鱼独家夜间,主要探讨了大坝的底部。通过溢洪道的鳗鱼在夜晚和日间探索了整个大坝区域,并没有被补偿管入口吸引。随着全球变暖,预期更频繁的干旱期,可能导致鳗鱼迁移鳗鱼迁移的机会减少。为了保护这种濒危物种,需要考虑预期的水文条件和不同的勘探行为的大坝管理策略。

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