首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Paired hydraulically distinct vertical-slot fishways provide complementary fish passage at an estuarine barrier
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Paired hydraulically distinct vertical-slot fishways provide complementary fish passage at an estuarine barrier

机译:配对的液压独特的垂直槽鱼道提供河口屏障的互补鱼通道

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Facilitating fish passage in fragmented river systems has commonly focused on commercially important migratory species (e.g. salmonids). Increasingly, ecosystem-based approaches to river rehabilitation are being adopted and fishways are progressively being designed for fish assemblages. Estuarine barriers to fish movement have received less attention than riverine barriers in regards to refinement of fish passage. This study evaluated fish passage at a pair of hydraulically distinct vertical-slot fishways (large vertical slot: max velocity 2.0 m s(-1), max turbulence 95 W m(-3), discharge 0.36 m3 s(-1); small vertical-slot: max velocity 1.0 m s(-1), max turbulence 26 W m3, discharge 0.03 m3 s(-1)) on a low-level (-1.0 m) estuarine barrier at the terminus of the River Murray, Australia. Over 32 paired-day samples of the fishway entrances and exits, 291,483 fish (19 species) were sampled from the large vertical-slot, compared to 183,659 fish (19 species) from the small vertical-slot. Small-bodied fish (<100mm) dominated the catch (>96%) and large-bodied species were rare at both fishways. Species composition was similar, but species-specific abundances varied widely between fishways. The large vertical-slot successfully passed a broad range of species and sizes, but the passage of several small-bodied (<100mm in length) species was partially obstructed, whilst passage efficiency was high for all species that entered the small vertical-slot fishway. Variation in head differential and subsequently fishway hydraulics, influenced the number of fish sampled at the entrance of the small vertical-slot and the number of fish sampled at the exit of the large vertical slot. In unison, however, the fishways facilitated the passage of a diverse migratory fish assemblage across the range of head differential experienced, suggesting the application of paired vertical-slot fishways with differing hydraulic characteristics is likely a viable approach at other low-level estuarine barriers. (C) 2016 Elsevier B.V. All rights reserved.
机译:促进碎片河流系统中的鱼类通道通常集中在商业上重要的迁徙物种(例如鲑鱼)。越来越多地采用基于河流康复的生态系统的方法,并逐步为鱼类组装设计。对鱼类运动的河口障碍比河流障碍的关注不那么关注,以改善鱼类。本研究评估了一对液压不同的垂直槽鱼条(大型垂直槽:最大速度2.0ms(-1),最大湍流95WM(-3),排放0.36m3s(-1);小垂直-Slot:最大速度1.0 ms(-1),最大湍流26 W m3,在澳大利亚河默里河末端的低水平(-1.0米)河口屏障上排出0.03m 3 s(-1))。超过32个鱼道入口的样品和出口,291,483条鱼(19种)从大型垂直槽中取样,而来自小垂直槽的183,659条鱼(19种)。小体鱼(<100mm)主导了捕获(> 96%),含有大型物种在鱼道上都很罕见。物种组合物相似,但物种特异性丰富在鱼道之间变化广泛。大型垂直槽成功通过了广泛的物种和尺寸,但是几种小体(长度为<100mm)物种的通过部分阻碍,效率为进入小型垂直槽鱼道的所有物种都很高。头部差动和随后的钓鱼道液压的变化,影响了在小垂直槽的入口处采样的鱼数,以及在大垂直槽的出口处采样的鱼数。然而,在稳健的情况下,鱼道促进了各种各样的迁移鱼组合在各种头差分经验中通过,表明配对的垂直槽鱼道具有不同的液压特性可能是在其他低水平的河口屏障中具有可行的方法。 (c)2016年Elsevier B.v.保留所有权利。

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