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Fishway Evaluations for Better Bioengineering: An Integrative Approach

机译:用于更好的生物工程的鱼道评估:一种综合的方法

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Effective fishway design requires extensive integration of biological and hydraulic data. Many relevant biological parameters remain poorly characterized, however, and the lack of adequate biological data has long been recognized as a central weaknessin fish passage technology. This is of particular concern given the growing recognition of the importance of passing a broad diversity of species. Part of the reason for this weakness is the difficulty of identifying relevant biological, hydraulic, andother physical parameters. We propose that by both exploring questions suggested by current knowledge, and also by increasing the frequency and refining the methods with which fishways are evaluated, two results can be achieved: our understanding of design effectiveness can be improved, and research questions can be prioritized through adaptive management. We describe a framework and rationale for fishway evaluations that identifies several promising avenues of research. Understanding correlates of passage performance is increasingly important as fish passage needs expand on a global scale.
机译:有效的鱼道设计需要广泛地整合生物和液压数据。然而,许多相关的生物学参数表征差,并且缺乏足够的生物数据已经被认为是中央缺点鱼通道技术。这对于越来越彰显通过广泛多样化物种的重要性而越来越多地令人担忧。这种弱点的一部分原因是难以识别相关的生物,液压和其他物理参数。我们建议通过探索目前知识所提出的问题,并且还通过增加评估鱼道的频率和精炼方法,可以实现两个结果:我们对设计有效性的理解可以得到改善,并且可以通过研究问题进行优先考虑自适应管理。我们描述了用于捕获渔路评估的框架和理由,其识别了几个有前途的研究途径。了解通行绩效的相关性越来越重要,因为鱼通道需要在全球范围内扩展。

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