首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Case study: Targeting species and applying swimming performance data to fish lift design for the Huangdeng Dam on the upper Mekong River
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Case study: Targeting species and applying swimming performance data to fish lift design for the Huangdeng Dam on the upper Mekong River

机译:案例研究:针对物种,将游泳绩效数据应用于湄公河上部黄德坝鱼升机设计

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摘要

A dam will be built in the upper reaches of the Mekong River, obstructing fish migration and gene exchange, and a fish lift will be constructed to mitigate these impacts. Target species for the lift were selected based on five criteria: (1) passage demand, (2) passage utility, (3, 4) protection worthiness (protection class and economic value) and (5) fish resource status. Swimming performance of target fish species were assessed and the results were used to recommend velocity criteria for the lift. Swimming performance was assessed by measuring induced flow velocity (U-ind, the lowest water velocity that induces continuous fish motion against the flow), critical swimming speed (U-crit) and burst speed (U-burst). The relationship of swimming performance to body length was also investigated. The research led to three primary findings: (1) The absolute U-ind and U-crit (m/s) were positively correlated with body length, whereas the relationship between the absolute U-burst (m/s) and body length were inconsistent. (2) The flow that was 90% effective in reaching the desired endpoint (EF90) was used to set fish lift design criteria for flow velocity. The EF90 value for U-ind (90% induction rate) was 0.17 m/s and the values for U-crit and U-burst (90% success rates), were 0.62 m/s and 0.87 m/s. (3) Recommended velocity criteria for the fish lift are as follows: entrance velocity, 0.37-0.87 m/s (0.6 Ucrit-EF90-Uburst-EF90), with mean velocity 0.50 m/s (0.8 Ucrit-EF90); passageway velocity, 0.17-0.50 m/s (Uind-EF90-0.8 Ucrit-EF90), with mean velocity 0.37 m/s (0.6 Ucrit-EF90); holding chamber velocity, 0.17-0.37 m/s (Uind-EF90-0.6 Ucrit-EF90), with mean velocity 0.27 m/s [(Uind-EF90 + 0.6 Ucrit-EF 90)/2]. The approach developed in this case study has good potential as a general method for selecting target fish species and setting site-specific flow velocity criteria for fish passage design.
机译:大坝将建在湄公河的上游,阻碍鱼迁移和基因交换,将建造鱼升力以减轻这些影响。基于五个标准选择升降机的目标物种:(1)通道需求,(2)通道效用,(3,4)保护权力(保护阶层和经济价值)和(5)鱼资源状况。评估目标鱼类的游泳性能,结果用于推荐升力的速度标准。通过测量诱导的流速(U-IND,诱导连续鱼类运动的最低水速度,突出流量的最低水速),评估游泳性能,临界游泳速度(U-CRIT)和突发速度(U-Burst)。还研究了游泳性能与体长的关系。该研究导致了三个主要发现:(1)绝对U-IND和U-CRIT(M / S)与体长度呈正相关,而绝对U形突发(M / S)和体长之间的关系不一致。 (2)在达到所需终点(EF90)的90%有效的流程用于设置鱼升性设计标准以进行流速。 U-Ind(90%诱导率)的EF90值为0.17m / s,U-CRIT和U形突发值(90%成功率)的值为0.62 m / s和0.87 m / s。 (3)鱼升的推荐速度标准如下:入口速度,0.37-0.87 m / s(0.6 ucrit-ef90-uburst-ef90),平均速度0.50 m / s(0.8 ucrit-ef90);通道速度,0.17-0.50 m / s(Uind-ef90-0.8 ucrit-ef90),平均速度0.37 m / s(0.6 ucrit-ef90);保持腔室速度,0.17-0.37 m / s(Uind-ef90-0.6 ucrit-ef90),平均速度0.27 m / s [(Uind-ef90 + 0.6 ucrit-ef 90)/ 2]。在这种情况下,在这种情况下开发的方法具有良好的潜力作为选择靶鱼种的一般方法和用于鱼类通道设计的特定场地特定流速标准。

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