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用于模拟鱼类在障碍物附近运动的个体模型:当前工作与未来方向。

Individual based models for the simulation of fish movement near barriers: Current work and future directions.

作者信息

Mawer Rachel, Pauwels Ine S, Bruneel Stijn P, Goethals Peter L M, Kopecki Ianina, Elings Jelger, Coeck Johan, Schneider Matthias

机构信息

University of Ghent, Ghent, Belgium; SJE Ecohydraulic Engineering, Stuttgart, Germany.

Research Institute for Nature and Forest (INBO), Brussels, Belgium.

出版信息

J Environ Manage. 2023 Jun 1;335:117538. doi: 10.1016/j.jenvman.2023.117538. Epub 2023 Feb 26.

Abstract

River fragmentation is an increasing issue for water managers and conservationists. Barriers such as dams interfere with freshwater fish migration, leading to drastic population declines. While there are a range of widely implemented mitigation approaches, e.g. fish passes, such measures are often inefficient due to suboptimal operation and design. There is increasing need to be able to assess mitigation options prior to implementation. Individual based models (IBMs) are a promising option. IBMs can simulate the fine-scale movement of individual fish within a population as they attempt to find a fish pass, incorporating movement processes themselves. Moreover, IBMs have high transferability to other sites or conditions (e.g. changing mitigation, change in flow conditions), making them potentially valuable for freshwater fish conservation yet their application to the fine-scale movement of fish past barriers is still novel. Here, we present an overview of existing IBMs for fine-scale freshwater fish movement, with emphasis on study species and the parameters driving movement in the models. In this review, we focus on IBMs suitable for the simulation of fish tracks as they approach or pass a single barrier. The selected IBMs for modelling fine-scale freshwater fish movement largely focus on salmonids and cyprinid species. IBMs have many applications in the context of fish passage, such as testing different mitigation options or understanding processes behind movement. Existing IBMs include movement processes such as attraction and rejection behaviours, as reported in literature. Yet some factors affecting fish movement e.g. biotic interactions are not covered by existing IBMs. As the technology available for fine scale data collection continues to advance, such as increasing data linking fish behaviour to hydraulics, IBMs could become a more common tool in the design and implementation of fish bypass structures.

摘要

河流碎片化对水资源管理者和自然资源保护主义者来说是一个日益严重的问题。诸如大坝之类的障碍物会干扰淡水鱼的洄游,导致鱼群数量急剧下降。虽然有一系列广泛实施的缓解措施,例如鱼道,但由于运行和设计欠佳,这些措施往往效率低下。越来越需要在实施之前能够评估缓解方案。基于个体的模型(IBMs)是一个很有前景的选择。基于个体的模型可以模拟鱼群中个体鱼在试图找到鱼道时的精细尺度运动,并纳入运动过程本身。此外,基于个体的模型对其他地点或条件(例如缓解措施的变化、水流条件的变化)具有很高的可转移性,这使得它们对淡水鱼保护具有潜在价值,然而它们在鱼通过障碍物的精细尺度运动方面的应用仍然很新颖。在这里,我们概述了现有的用于淡水鱼精细尺度运动的基于个体的模型,重点是研究物种以及驱动模型中运动的参数。在这篇综述中,我们关注适用于模拟鱼接近或通过单个障碍物时轨迹的基于个体的模型。所选的用于模拟淡水鱼精细尺度运动的基于个体的模型主要集中在鲑科鱼类和鲤科鱼类。基于个体的模型在鱼道方面有许多应用,例如测试不同的缓解方案或理解运动背后的过程。现有基于个体的模型包括文献中报道的吸引和排斥行为等运动过程。然而,一些影响鱼类运动的因素,例如生物相互作用,并未被现有基于个体的模型涵盖。随着可用于精细尺度数据收集的技术不断进步,例如将鱼类行为与水力学联系起来的数据不断增加,基于个体的模型可能会成为鱼道结构设计和实施中更常用的工具。

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