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Inducing Flow Velocities to Manage Fish Reproduction in Regulated Rivers

机译:诱导流速以管理规范河流的鱼繁殖

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摘要

Conservation of endangered or economic fish and control of invasive fish is a great challenge of hydraulic engineering worldwide.Flow velocity has been recognized to affect the spawning of fishes delivering drifting eggs in rivers.However,solid scientific supports and associated mechanisms to establish quantitative relations between flow velocity and fish reproduction,taking into account spawning,fertilizing,hatching,as well as surviving,are lacking.In this paper,we quantified the relationship between flow velocity and reproduction of Chinese carps through both lab and field experiments.The results showed that a minimum velocity was required to trigger Hypophthalmichthys molitrix(H.molitrix)releasing eggs,and a velocity range was preferred to sustain spawning activity.However,the embryo incubation and larvae development of H.molitrix were found to be inhibited with the increase in flow velocity.Considering the requirements of spawning and hatching,as well as larvae surviving,an optimized flow velocity processes was identified for the reproduction of H.molitrix in rivers.These findings were of great significance to the adaptive operation of reservoirs to create reasonable and precise ecological flows for managing fish reproduction,as shown by the promising results in the engineering application to the Three Gorges Reservoir.
机译:保护濒危或经济鱼类和对侵入性鱼类的控制是全球水力工程的巨大挑战。已经认识到流速影响了在河流中提供漂流鸡蛋的鱼类产卵。无论,坚实的科学支持和相关机制建立了定量关系流速和鱼类繁殖,考虑到产卵,施肥,孵化以及幸存,缺乏。在本文中,我们通过实验室实验量化了中国鲤鱼的流速与繁殖的关系。结果表明在释放卵子释放卵泡(Hmolitix)释放卵中需要最小速度,并且优选速度范围以维持产卵活性。然而,发现Hamolitix的胚胎培养和幼虫发育被抑制了流动的增加速度。提高产卵和孵化的要求,以及幼虫幸存,优化鉴定了河流中H.Molitix的再现的流量速度过程。这些结果对水库的自适应操作具有重要意义,以创造用于管理鱼类繁殖的合理和精确的生态流量,如有前景的工程应用所示所示到了三峡库里尔。

著录项

  • 来源
    《工程(英文)》 |2021年第002期|P.178-186|共9页
  • 作者单位

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Nanjing Hydraulic Research Institute Nanjing 210029 ChinaCenter for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 ChinaYangtze Institute for Conservation and Green Development Nanjing 210029 China;

    State Key Laboratory of Hydrology-Water Resources and Hydraulic Engineering Nanjing Hydraulic Research Institute Nanjing 210029 ChinaYangtze Institute for Conservation and Green Development Nanjing 210029 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 China;

    Chinese Sturgeon Research Institute China Three Gorges Corporation Yichang 443000 China;

    Chinese Sturgeon Research Institute China Three Gorges Corporation Yichang 443000 China;

    Chinese Sturgeon Research Institute China Three Gorges Corporation Yichang 443000 China;

    Center for Eco-Environmental Research Nanjing Hydraulic Research Institute Nanjing 210029 ChinaChongqing Jiaotong University Chongqing 400074 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 肿瘤学;
  • 关键词

    River damming; Chinese carps; Population management; Ecological flow; Yangtze River;

    机译:河坝;中国鲤鱼;人口管理;生态流动;长江;
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