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过鱼设施设计中的鱼类行为研究与问题

蔡露1,金瑶1,潘磊2,赵萍1,贺达1,侯轶群1,陈小娟1,张鹏1,3*   

  1. (1水利部中国科学院水工程生态研究所, 水利部水工程生态效应与生态修复重点实验室, 武汉 430079;2湖北大学资源环境学院, 武汉 430062;3武汉大学水资源与水电工程科学国家重点实验室, 武汉 430072)
  • 出版日期:2018-11-10 发布日期:2018-11-10

Issues on fish behaviors in the design of fish passage facilities.

CAI Lu1, JIN Yao1, PAN Lei2, ZHAO Ping1, HE Da1, HOU Yi-qun1, CHEN Xiao-juan1, ZHANG Peng1,3*   

  1. (1Key Laboratory of Ecological Impacts of HydraulicProjects and Restoration of Aquatic Ecosystem of Ministry of Water Resources, Institute of Hydroecology, Ministry of Water Resources and Chinese Academy of Sciences, Wuhan 430079, China; 2Faculty of Resources and Environmental Science, Hubei University, Wuhan 430062, China; 3State Key Laboratory of Water Resources and Hydropower Engineering Science, Wuhan University, Wuhan 430072, China).
  • Online:2018-11-10 Published:2018-11-10

摘要: 水利水电工程对鱼类的洄游和基因交流产生了一定影响,过鱼设施是一项重要的缓解措施,而鱼类游泳特性和趋向特征等行为学研究是过鱼设施设计的重要依据。本文阐释了鱼类游泳特性和趋向特征的基本概念,分析了鱼类行为研究方法的优缺点及影响因素(水流速度、水流形态、水温等),探讨了鱼类行为研究在过鱼设施应用中存在的4个问题,并提出了相应建议:(1)实际过鱼设施内流场十分复杂,因而需要加强复杂流场条件下鱼类行为学研究;(2)运动训练可能提高鱼类游泳能力,因而可以利用其规律提高鱼类通过过鱼设施的成功率;(3)不同目标鱼类游泳能力有差异,因而需要提出新的设计使单个过鱼设施满足所有目标鱼类的过鱼需求;(4)各研究单位使用着不同的鱼类行为数据处理方法,造成各研究结果之间难以直接用于比较分析,因而亟需政府有关部门和业内人士尽快深入研究并以行业内规范、导则或其他方式将鱼类行为研究数据处理方法标准化。

关键词: Logistic, 海湾型城市, 土地利用, 生态系统服务, CA-Markov, 情景模拟

Abstract: Hydropower projects obstruct fish migration and prevent gene exchange. Fish passage facilities are the primary means of mitigating such adverse impacts. Understanding fish behaviors, including swimming performance and tropism, is important for the design of fish passage facilities. We reviewed the concepts of swimming performance and tropism, research approaches and influencing factors (such as flow velocity, flow field, and temperature). Key research results on swimming performance and tropism are summarized and the application of fish swimming behaviors to fish passage facility design is discussed. Four critical issues are addressed: (1) Fish behaviors in complex flow fields should be considered in depth because of the complexity of flow fields in fish passages. (2) Exercise training can improve fish swimming performance and thus could be used to increase the success rate of fish passage. (3) Swimming performance variesamong species. New and innovative designs are required to increase the number of species able to utilize a fish passage facility. (4) Different methods have been used to study fish behaviors, with results being difficult to compare. Hence, research administrators, with input from experts, should formulate criteria and guidance for standardizing fish behavior research.

Key words: Logistic, bay city, land use, ecosystem service, CA-Markov, scenarios simulation