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首页> 外文期刊>Journal of Hydrology >Laboratory study on fish behavioral response to meandering flow and riffle-pool sequence driven by deflectors in straight concrete flood channels
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Laboratory study on fish behavioral response to meandering flow and riffle-pool sequence driven by deflectors in straight concrete flood channels

机译:直混凝土泄洪通道中鱼类对蜿蜒水流和偏流板驱动波涝池序列行为响应的室内研究

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Sectional channelization of natural rivers for flood mitigation causes discontinuity of the riverine corridor, leading to unfavorable conditions for fish movement in the longitudinal direction. To minimize the negative effects, hydraulic structures (e.g. deflectors) are proposed as potential restoration measures in concrete flood channels. In this study, indoor flume experiments were carried out to assess the variation of flow field (velocity magnitude, turbulent kinetic energy, and Reynolds stress) and bed morphology with the inclusion of deflectors. The flow and sediment regimes were then compared in the presence or absence of deflectors. The experimental results indicated that deflectors triggered a non-uniform flow pattern and stimulated riffle-pool sequence formation through local scouring and subsequent deposition. To better understand the response of predaceous chub (Parazacco spilurus) and mud carp (Cirrhinus molitorella) to deflectors, fish trajectories, distribution, and number of transits were analyzed using a video monitoring system. The results suggested that fish responded differently to the baseline (without deflector) and deflector scenarios: (1) fish struggled against the oncoming current when crossing the physical barrier in the channelized section; (2) fish moved and rested in the diverse habitats created by deflectors. Additionally, the presence of sediments in the channel bed was essential in attracting fish to the channelized section. Therefore, it was concluded that using deflectors at appropriate intervals and allowing the existence of sediments in flood channel sections can benefit fish movement and enhance channel naturalization.
机译:为防洪而对天然河流进行分段渠化,导致河流走廊不连续,导致鱼类纵向运动的不利条件。为了尽量减少负面影响,建议将水工结构(例如导流板)作为混凝土防洪通道的潜在修复措施。本研究通过室内水槽实验,评估了流场(速度大小、湍流动能和雷诺应力)和河床形态的变化。然后比较在有无导流板的情况动和沉积物的状况。实验结果表明,导流板通过局部冲刷和后续沉积触发了不均匀的流动模式,刺激了波纹池序列的形成。为了更好地了解捕食性鲢鱼(Parazacco spilurus)和泥鲤(Cirrhinus molitorella)对偏转器的反应,使用视频监测系统分析了鱼类的轨迹、分布和过境次数。结果表明,鱼类对基线(无导流板)和导流板情景的反应不同:(1)鱼类在穿过通道化部分的物理屏障时与迎面而来的水流作斗争;(2)鱼类在导流板创造的多样化生境中移动和休息。此外,河床中沉积物的存在对于吸引鱼类进入河道部分至关重要。因此,得出的结论是,在适当的时间间隔使用导流板并允许洪水河道段存在沉积物可以有利于鱼类运动并促进河道归化。

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