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识别操作场景,以优化中国青藏高原特有鱼类在鱼道进口附近的吸引力流,以匹配其游泳特征:案例研究。

Identifying operation scenarios to optimize attraction flow near fishway entrances for endemic fishes on the Tibetan Plateau of China to match their swimming characteristics: A case study.

机构信息

State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resource & Hydropower, Sichuan University, Chengdu, Sichuan, China.

State Key Laboratory of Hydraulics and Mountain River Engineering, College of Water Resource & Hydropower, Sichuan University, Chengdu, Sichuan, China.

出版信息

Sci Total Environ. 2019 Nov 25;693:133615. doi: 10.1016/j.scitotenv.2019.133615. Epub 2019 Jul 26.

Abstract

Attracting fish at fishway entrances is vital for ensuring fish passage efficiency, which requires consideration of the swimming characteristics of fish. The objective of this case study was to propose optimized flow conditions downstream of a dam on the Tibetan Plateau to attract fish into fishways. Six local endemic species of Cyprinidae: Schizothoracinae were considered as protection targets. However, the swimming abilities of most endemic fishes on the plateau remain unclear, and no previous projects in this area could serve as a reference. Thus, the swimming performances of the target species were first tested based on three indexes, induction velocity, critical swimming speed and bursting swimming speed, and six behavior zones were classified by different flow velocity thresholds based on the test results. A verified 3D hydrodynamic model was then adopted to simulate the flow field downstream of the dam under four typical reservoir operation scenarios. By matching the simulated flow fields to the different behavior zones, all scenarios were assessed for the passability of the target fishes, and the results showed that there would be different potential migration routes under each scenario. For the most common scenario during the fish passage season, symmetrical use of turbines T1 and T6 was recommended so that the flow would be lower velocity and the turbulence would be less intense near the fishway entrances than the current regime. Moreover, the addition of a new entrance was suggested on the migration routes with high potential use to increase the chance that fish would enter. Beyond providing a solution for this specific case, this study enriches knowledge about the swimming features of endemic fishes on the Tibetan Plateau. Furthermore, this research provides a possible technical methodology that combines fish behavioral characteristics and hydraulic indexes when determining attraction flows in similar fish passage projects.

摘要

在鱼道入口处吸引鱼类对于确保鱼类通过效率至关重要,这需要考虑鱼类的游泳特性。本案例研究的目的是提出优化青藏高原大坝下游的水流条件,以吸引鱼类进入鱼道。六种当地特有的鲤科鱼类:裂腹鱼属被视为保护目标。然而,高原上大多数特有鱼类的游泳能力仍不清楚,该地区以前的项目也无法作为参考。因此,首先根据诱导速度、临界游泳速度和爆发游泳速度这三个指标测试了目标物种的游泳性能,并根据测试结果通过不同的流速阈值将六个行为区域进行分类。然后采用验证的 3D 水动力模型模拟大坝下游在四种典型水库运行情景下的流场。通过将模拟流场与不同的行为区域相匹配,评估了所有情景下目标鱼类的通过性,结果表明,在每种情景下都会有不同的潜在迁徙路线。对于鱼类洄游季节最常见的情景,建议对称使用涡轮机 T1 和 T6,以便在鱼道入口附近的水流速度较低,且紊流强度小于当前的水流条件。此外,建议在高潜在使用的迁徙路线上增加一个新的入口,以增加鱼类进入的机会。本研究除了解决这个具体案例外,还丰富了青藏高原特有鱼类游泳特征的知识。此外,本研究提供了一种可能的技术方法,将鱼类行为特征和水力指标结合起来,用于确定类似鱼类通道项目中的吸引水流。

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