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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Simultaneous assessment of two passage facilities for maintaining hydrological connectivity for subtropical coastal riverine fish
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Simultaneous assessment of two passage facilities for maintaining hydrological connectivity for subtropical coastal riverine fish

机译:同时评估两种通道设施,维持亚热带沿海河流鱼类水文连通性

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Engineering solutions that aim to restore hydrological connectivity in river systems fragmented by dams and weirs frequently include the installation of fish passage facilities (i.e. fishways). Assessment of fish passage performance is often limited to single fishway designs and with a focus on species of commercial or conservation significance, meaning that conclusions regarding fishway success may not apply to all species that require access to fragmented habitats. We simultaneously compared the population structure and fish assemblage composition at two fishways (vertical slot and fish lock designs) at weirs in a subtropical coastal river system. We used hydrological and physico-chemical water quality data to explore if fishway performance was linked to particular environmental conditions. At both fishways, fish assemblage composition differed between fishway exit and downstream river samples, yet differences between exit and river samples were not associated with hydrological variables related to the size and frequency of weir drown-out events or water quality. Population structure of the most abundant species (sea mullet, Mugil cephalus; 61% of fish samples) also differed significantly among fishway exit and river habitats. A low-level structure spanning the river channel downstream of one weir was not associated with differences in fish assemblage composition indicating that access to the fishway entrance (and therefore fishway use) was not hindered by in-stream obstructions. Eight and seven species (predominantly small-bodied species that migrate within freshwater systems) were exclusively sampled in downstream river locations at the vertical slot and fish lock fishways, respectively, indicating that neither design was fully capable of facilitating the passage of the local fish fauna. Further assessment over a broader range of hydrological conditions will be necessary to determine if use of either fishway by fish is affected by low flows. Coupled with evidence produced from landscape-scale analysis of spatial and temporal variation in fish assemblage structure and dispersal patterns of diadromous species associated with river flow regime highlight that hydrological connectivity may be maintained by natural weir drown-out events. This study highlights that factors controlling hydrological connectivity for riverine biota need to be integrated among co-occurring anthropogenic impacts to identify and overcome constraints to effective conservation management in rivers subject to water resource development.
机译:旨在恢复河流和堰河流系统中水文连接的工程解决方案经常包括鱼通道设施的安装(即鱼道)。对鱼类通道性能的评估通常仅限于单捕鱼道设计,并专注于商业或保护意义的种类,这意味着关于鱼道成功的结论可能不适用于所有需要获得分散栖息地的物种。我们同时在亚热带沿海河流系统中的堰堰(垂直槽和鱼锁设计)下进行人口结构和鱼群组合物。我们使用水文和物理化学水质的水质数据来探索鱼道性能与特定环境条件相关联。在捕鱼道上,鱼道出口和下游河流的鱼类组合物不同,但出口和河流之间的差异与与堰淹没事件或水质的大小和频率相关的水文变量无关。物种最丰富的人口结构(海洋Mullet,Mugil Cephalus; 61%的鱼类样品)在鱼道出口和河流栖息地之间也有显着差异。跨越一个堰下游的低级结构与鱼组合物组合物的差异无关,该组合物的差异表明可以通过内部障碍物阻碍对鱼道入口(并且因此鱼道使用)的进入。八七种(主要的小型物种在淡水系统内迁移)分别在垂直插槽和鱼锁鱼道的下游河流位置上被排列,表明既不能够完全能够促进当地鱼类动物的通过。在更广泛的水文条件下进一步评估是必要的,以确定是否使用鱼类的鱼类受到低流量的影响。再加上具有与河流制度相关的鱼组合结构的空间和时间变化的横向分析以及与河流制度相关的日记物种的分散模式强调,可以通过天然堰淹没事件维持水文连接。本研究突出了控制河流生物群水文连通性的因素需要在共同发生的人体产生的影响中,以确定和克服河流受水资源开发的有效保护管理的限制。

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