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首页> 外文期刊>Journal of Ecohydraulics >Laboratory testing of an innovative tube fishway concept
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Laboratory testing of an innovative tube fishway concept

机译:创新管道概念的实验室测试

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摘要

Effective fishways are required for restoring fish migrations and reversing worldwide declines in freshwater fish while making sustainable use of water resources. Mitigation of barrier effects at high-head dams and weirs is often impeded by poor fishway performance and high costs. Improved and less-costly designs are urgently needed. Our innovative tube fishway concept combines established fishways techniques with aquaculture's pumping methods and fish-behaviour insights for safe upstream fish passage. We experimented with scaled-down fishway designs using juvenile Australian bass (Percolates novemaculeata). An experimental horizontal-cylinder design successfully combined volitional-passage functions of existing fishways with non-volitional transfer using pumped water. Three key principles of fish behaviour in fishways led to design improvements: disturbed fish often seek refuge at depth; fishes' escape reactions strongly motivate swimming into flows; and curved structures can reduce delays. In nine trials of the best fishway design, 44 of 45 Australian bass passed within 50min. cycles. The tube fishway concept offers potential for effective upstream fish passage at new and existing barriers >~2m high, with low construction and operation costs and capacity to operate in variable flow regimes. Further development is proceeding with larger-scale laboratory trials, an innovative pumping system and more species.
机译:恢复鱼类迁徙需要有效的鱼道,并在淡水鱼中逆转全球越来越多,同时可以进行可持续利用水资源。在高压坝和堰的缓解障碍效应通常受到差的鱼道性能和高成本的阻碍。迫切需要改善和更昂贵的设计。我们创新的管道概念结合了建立的鱼道技术,采用水产养殖的泵送方法和鱼类行为洞察安全上游鱼类。我们尝试使用少年澳大利亚低音(渗透Novemuleata)的缩小鱼道设计。实验水平缸设计成功地使用泵水与非加速转移的现有鱼道的激动通道功能。鱼条中鱼类行为的三个关键原则导致设计改进:扰乱的鱼经常在深度寻求避难;鱼的逃生反应强烈激励游泳;弯曲的结构可以减少延迟。在最佳鱼道设计的九项试验中,45个澳大利亚低音44岁以内通过50分钟。循环。管渔道概念在新的和现有障碍物上提供有效上游鱼类的潜力>〜2米高,施工低,在可变流动制度中运行的低构造和运营成本和能力。进一步的发展正在进行大规模的实验室试验,这是一种创新的泵送系统和更多种类。

著录项

  • 来源
    《Journal of Ecohydraulics》 |2020年第1期|84-93|共10页
  • 作者单位

    Centre for Ecosystem Science School of Biological Earth and Environmental Sciences UNSW Sydney NSW Australia;

    Water Research Laboratory School of Civil and Environmental Engineering UNSW Sydney NSW Australia;

    Wildfish Engineering LLC Denver Co USA;

    Centre for Ecosystem Science School of Biological Earth and Environmental Sciences UNSW Sydney NSW Australia;

    Water Research Laboratory School of Civil and Environmental Engineering UNSW Sydney NSW Australia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Fishway; fish passage; migration; connectivity; dams;

    机译:鱼道;鱼通道;移民;连接;水坝;

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