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变流场情景下基于鱼类游泳特性的上溯通道分析
引用本文:孙林,易文敏,张兴磊,李嘉,安瑞冬. 变流场情景下基于鱼类游泳特性的上溯通道分析[J]. 水力发电学报, 2021, 40(10): 1-9. DOI: 10.11660/slfdxb.20211001
作者姓名:孙林  易文敏  张兴磊  李嘉  安瑞冬
摘    要:水电开发对洄游性鱼类的生境造成了影响,预测目标鱼类洄游期的上溯通道可为修建过鱼设施提供依据,从而减缓其负面效应。本文选取虎渡溪航电工程的下游河段作为研究区域,将长薄鳅、白甲鱼、异鳔鳅鮀作为目标鱼类,针对几种目标鱼类的游泳能力对不同流速进行分区后,得出了适用于多种过鱼目标的流速适宜度曲线,然后对研究区域过鱼期的典型流量进行了数值模拟。根据流速适宜度曲线对研究区域的多种过鱼目标进行了流速适宜度评价,并由评价结果预测了满足多目标过鱼要求的上溯通道。结果表明:流速适宜度评价最优区域出现的位置随流量变化而有所不同,低流量运行条件下出现在主流区域,而高流量运行条件下出现在主流区域两侧;上溯的通道面积占总面积的比例也随流量变化而有所不同,低流量运行条件下的占比约为高流量运行条件下的3 ~ 4倍。根据预测通道特征,对鱼道的进口布置及电站运行调度提供了建议。该结果可为相关鱼类的保护工作提供依据。

关 键 词:生态水力学  流速  多目标过鱼  上溯通道  

Analysis of upstream migrating channels based on characteristics of fish swimming in variable flow field
SUN Lin,YI Wenmin,ZHANG Xinglei,LI Jia,AN Ruidong. Analysis of upstream migrating channels based on characteristics of fish swimming in variable flow field[J]. Journal of Hydroelectric Engineering, 2021, 40(10): 1-9. DOI: 10.11660/slfdxb.20211001
Authors:SUN Lin  YI Wenmin  ZHANG Xinglei  LI Jia  AN Ruidong
Abstract:Hydropowerdevelopment impacts the habitat of migratory fishes significantly. Predictingthe upstream migrating passage of target fish in their migration period canprovide a basis for construction of fishway facilities so as to mitigate thenegative effects. This study selects a research area in the reachdownstream from the Huduxi hydropower-navigation project, takes Leptobotiaelongate, Onychostoma sima and Gobiobotia bouleugeri as thetarget fish, and divides the study area into flow zones of different velocitiesby the swimming performance of these fishes. We obtain flow velocitysuitability curves suitable for different fish-passing targets, and numericallysimulate typical flow rates in the study area in the fish-passing period. Then,based on the suitability curves, we can evaluate the flow velocity suitabilityof different fish-passing targets for the study area, and use the evaluations topredict an upstream migrating channel that satisfies the multi-target fish-passingconditions. The results show that the location of fish passageoptimized through flow velocity suitability evaluation varies with the channel flowrate. It goes through the mainstream zone under low-flow conditions, while throughboth sides of the mainstream zone under high-flows. And the proportion of thepassage area to the total area also varies with the flow rate, with its low-flowvalues about 3 to 4 times its high-flow values. By the fish migrating channelpredicted in this study, we make suggestions to optimize the layout of fishwayinlet and the operation and dispatching of the power station, providing a basisfor protecting the related fishes.
Keywords:ecological hydraulics  flow velocity  multi-target fish  upstream migrating channel  
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