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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Corner and sloped culvert baffles improve the upstream passage of adult European eels (Anguilla anguilla)
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Corner and sloped culvert baffles improve the upstream passage of adult European eels (Anguilla anguilla)

机译:弯角和斜涵挡板可改善成年欧洲鳗鱼(安圭拉鳗鱼)的上游通道

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Installation of baffles intended to improve fish passage through culverts can reduce discharge capacity and trap debris, increasing flood risk. A sloping upstream face may reduce this risk, but new designs must be tested for fish passage efficiency. The European eel (Anguilla anguilla) is a critically endangered species, yet the suitability of even common baffle types to aid upstream movement has not been tested. This study compared the water depth, velocity, turbulent kinetic energy (TKE), and upstream passage performance of adult yellow-phase eels, between three 6 m long culvert models: smooth and unmodified (control); containing corner baffles (treatment 1); and with prototype sloped baffles installed (treatment 2). Passage of individual fish was assessed during 25 one-hour trials per model. Performance was quantified as entrance efficiency, number of entries per fish, passage efficiency, and overall efficiency. Total and passage delay, and successful passage time were also evaluated. Despite some individuals being able to swim against unexpectedly high water velocities (>1.5 m s(-1) for 4 m), passage performance in the control was poor, with an overall efficiency of 28%. Compared to the control, both treatments increased the mean centreline water depth by approximately 0.11 m, created heterogeneous flow conditions with low velocity resting areas, and reduced maximum velocities. As a result, entrance rate and all efficiency parameters were higher for the treatments than for the control (overall efficiency =84%), despite longer passage delay. The TKE was slightly higher in treatment 2 than 1, but there was no difference in water depth or overall efficiency. The findings show that both corner and sloped baffles can mitigate for impeded upstream adult eel movement. The extent to which the sloping upstream face will improve debris transport should be explored further. (C) 2014 Elsevier B.V. All rights reserved.
机译:安装用于改善鱼类通过涵洞的挡板会降低排水能力并捕获杂物,从而增加洪水风险。倾斜的上游工作面可能会降低这种风险,但是必须测试新设计的鱼类通过效率。欧洲鳗鱼(Anguilla anguilla)是一种极度濒危的物种,但尚未测试甚至普通挡板类型对上游运动的适应性。这项研究比较了三个6 m长涵洞模型之间的水深,流速,湍流动能(TKE)和成年黄相鳗的上游通过性能:光滑和未改良(对照);装有角隔板(处理1);并安装了原型倾斜挡板(处理2)。每个模型在25个一小时的试验中评估了单个鱼的通过率。性能被量化为入口效率,每条鱼的入口数,通过效率和总体效率。还评估了总和通过延迟以及成功通过时间。尽管有些人能够以出乎意料的高水速游泳(> 1.5 m s(-1)持续4 m),但对照组的通过性能却很差,总效率为28%。与对照相比,两种处理均使中线平均水深增加了约0.11 m,创造了非均质的流动条件,低速静止区域,最大速度降低。结果,尽管通过延迟更长,但处理的进入率和所有效率参数均高于对照(总体效率= 84%)。处理2中的TKE略高于1,但水深或总体效率没有差异。研究结果表明,角落挡板和倾斜挡板均可缓解上游成年鳗鱼运动受阻的情况。倾斜的上游工作面将改善碎片运输的程度应进一步探讨。 (C)2014 Elsevier B.V.保留所有权利。

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