一种评估低水头溪流结构促进鱼类通过的粗糙度因素的新框架

IF 4.6 Q2 ENVIRONMENTAL SCIENCES Journal of ecohydraulics Pub Date : 2020-05-19 DOI:10.1080/24705357.2020.1738967
D. Magaju, J. Montgomery, P. Franklin, C. Baker, H. Friedrich
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引用次数: 7

摘要

摘要:人们对低水头溪流结构的鱼类通道解决方案越来越感兴趣,这导致了在这些结构中使用各种类型的粗糙度元素的新设计的开发和实施。我们知道,粗糙元素通过创建连续或离散的低速区来增加水流的非均匀性,从而支持鱼类通过。然而,这些粗糙度元素对各种低头结构和鱼类的有效性是不同的,而且往往没有详细评估。本文强调了评估粗糙度要素的三个重要方面,即鱼的行为、流体动力学和通道效率。提出了一种新的多阶段框架,可用于评估鱼类通道解决方案的有效性。最初,我们考虑了物种之间行为的独特性和由粗糙度元素产生的流体动力学,因为这些元素的大小和排列的广义解决方案可能不适用于所有物种。然后,为了有效的性能,为了确保在低水头结构设计中有效使用,讨论了鱼的行为(个体和群体)与流体动力学和粗糙度元素的有效性之间所需的联系。提出的框架综合了有效解决鱼类通过低水头结构所需的信息。
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A new framework for assessing roughness elements in promoting fish passage at low-head instream structures
Abstract Increasing interest in fish passage solutions past low-head instream structures has led to the development and implementation of new designs with various types of roughness elements within these structures. We know that roughness elements increase the heterogeneity in water velocity by creating a continuous or discrete low velocity zone, which supports fish passage. However, the effectiveness of these roughness elements for various low-head structures and fish species differs and is often not assessed in detail. This paper highlights three important aspects of assessing roughness elements, namely fish behavior, flow hydrodynamics and passage efficiency. A novel multi-stage framework that can be used for assessing the effectiveness of fish passage solutions is proposed. Initially, we consider the uniqueness of behaviour between species and the hydrodynamics created by roughness elements, as a generalized solution for the size and arrangement of these elements might not work effectively for all species. Then, for effective performance, the link that is required between fish behaviour (both individual and for groups) and hydrodynamics and effectiveness of the roughness elements is discussed for ensuring effective use in low-head structure designs. The proposed framework synthesizes the information required for effective solutions to fish passage through low-head structures.
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