首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Evaluation of flow patterns in vertical slot fishways with different slot positions based on a comparison passage experiment for juvenile grass carp
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Evaluation of flow patterns in vertical slot fishways with different slot positions based on a comparison passage experiment for juvenile grass carp

机译:基于不同槽位的垂直槽鱼道流动模式评估基于少年草鲤鱼的比较通道实验

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摘要

Flow patterns (FPs) are different due to different fishway structures and different boundary conditions in a river. FPs can greatly affect fish passage efficiency along the entire fishway. In this study, experimental hydraulic modelling is combined with the study of fish behavior in a physical model of a vertical slot fishway (VSF) with different slot positions and varying pool lateral baffle length (P) to width (B) ratios. A three-dimensional (3D) computational fluid dynamics (CFD) model is used to help understand the detailed hydraulic structures. Three distinct FPs are studied. When P/B < 0.2 and a short baffle was used, the principal flow was along the side wall with almost no curve to the next slot, and this was termed FP1. When 0.2 < P/B < 0.34 and a medium size baffle was used, the principal flow was in the center position. Hence, the principal flow leaving the slot entered the pools as a curved jet that dispersed into the pool center before converging again towards the next slot, and this was termed FP2. When P/B > 0.4 and a long baffle was used, the jet had a curved form along the opposite side wall, and this was termed FP3. Comparison experiments are conducted on the three FPs, and 82 to 90 trials are conducted to compare juvenile grass carp (Ctenopharyngodon idella) reactions to each FP. An analysis of the fish behavior in the model clearly demonstrated that the fish tended to need less time to pass in FP2 than in the other two FPs. FP2, with the principal flow in the center position, tended to be more suitable for fish migration. In addition, using an analysis of the less efficient FPs, it was found that the velocity gradient may act as an important migration behavior motivator, and that a recirculation zone too close to the downstream slot could increase the risk of downstream flush. It is suggested that further studies should investigate the behaviors of different fish species in the three typical FPs.
机译:由于不同的鱼道结构和河流中的不同边界条件,流动模式(FPS)不同。 FPS可以极大地影响整个鱼道的鱼通道效率。在本研究中,实验性水力建模与垂直槽(VSF)的物理模型中的鱼类行为的研究相结合,其具有不同的槽位位置和变化的池横向挡板长度(P)到宽度(B)比率。三维(3D)计算流体动力学(CFD)模型用于帮助理解详细的液压结构。研究了三种不同的FPS。当使用P / B <0.2和短挡板时,主要流动沿着侧壁,几乎没有曲线到下一个槽,这被称为FP1。当使用0.2

0.4和长挡板时,射流沿着相对的侧壁弯曲形式,并且这被称为FP3。对比较实验在三个FPS上进行,并进行82至90个试验以将少年草鲤鱼(Ctenopharyngodon Idella)反应进行比较至每种FP。分析模型中的鱼类行为清楚地证明了鱼类往往需要更少的时间来通过FP2而不是另外两个FP。 FP2,中心位置的主要流动,往往更适合鱼迁移。另外,使用对效率较低的FPS的分析,发现速度梯度可以充当重要的迁移行为刺激器,并且靠近下游槽的再循环区可以增加下游冲洗的风险。建议进一步的研究应该调查三种典型FPS中不同鱼类的行为。

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