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首页> 外文期刊>Reviews in Fish Biology and Fisheries >Hydropower-related pulsed-flow impacts on stream fishes: a brief review, conceptual model, knowledge gaps, and research needs
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Hydropower-related pulsed-flow impacts on stream fishes: a brief review, conceptual model, knowledge gaps, and research needs

机译:与水电有关的脉冲水流对河鱼类的影响:简要回顾,概念模型,知识缺口和研究需求

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The societal benefits of hydropower systems (e.g., relatively clean electrical power, water supply, flood control, and recreation) come with a cost to native stream fishes. We reviewed and synthesized the literature on hydropower-related pulsed flows to guide resource managers in addressing significant impacts while avoiding unnecessary curtailment of hydropower operations. Dams may release pulsed flows in response to needs for peaking power, recreational flows, reservoir storage adjustment for flood control, or to mimic natural peaks in the hydrograph. Depending on timing, frequency, duration, and magnitude, pulsed flows can have adverse or beneficial short and long-term effects on resident or migratory stream fishes. Adverse effects include direct impacts to fish populations due to (1) stranding of fishes along the changing channel margins, (2) downstream displacement of fishes, and (3) reduced spawning and rearing success due to reddest dewatering and untimely or obstructed migration. Beneficial effects include: (1) maintenance of habitat for spawning and rearing, and (2) biological cues to trigger spawning, hatching, and migration. We developed a basic conceptual model to predict the effects of different types of pulsed flow, identified gaps in knowledge, and identified research activities to address these gaps. There is a clear need for a quantitative framework incorporating mathematical representations of field and laboratory results on flow, temperature, habitat structure, fish life stages by season, fish population dynamics, and multiple fish species, which can be used to predict outcomes and design mitigation strategies in other regulated streams experiencing pulsed flows.
机译:水电系统的社会效益(例如,相对清洁的电力,供水,防洪和娱乐)给本地河鱼带来了成本。我们回顾并综合了与水电相关的脉冲水流的文献,以指导资源管理者应对重大影响,同时避免不必要地减少水电运营。大坝可能会释放脉冲水流,以响应峰值功率,休闲水流,水库蓄水调整以进行防洪或模仿水位图中的自然峰。取决于时间,频率,持续时间和强度,脉冲流可能对常驻或迁徙河鱼类产生不利或有利的短期和长期影响。不利影响包括由于以下因素对鱼类种群的直接影响:(1)沿变化的河道边缘搁浅的鱼类;(2)鱼类的下游位移;(3)由于变红/巢状的脱水以及不及时的或受阻的迁移,产卵和饲养成功减少。有益的影响包括:(1)维持产卵和饲养的栖息地,(2)引发产卵,孵化和迁移的生物学线索。我们开发了一个基本的概念模型来预测不同类型的脉冲流的影响,确定了知识方面的差距,并确定了解决这些差距的研究活动。显然需要一个定量框架,该模型应结合田间和实验室结果的数学表示法,以表示流量,温度,栖息地结构,按季节划分的鱼类生命阶段,鱼类种群动态以及多种鱼类,这些可用于预测结果和设计缓解措施其他调节流中遇到脉冲流的策略。

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