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解析爆发式游泳性能:关于疲劳时间的一种比例视角。

Decoding burst swimming performance: a scaling perspective on time-to-fatigue.

机构信息

Department of Environment, Land and Infrastructure Engineering, Politecnico di Torino, Torino, Italy.

Department of Engineering, University of Aberdeen, Aberdeen, Scotland, UK.

出版信息

J R Soc Interface. 2024 Oct;21(219):20240276. doi: 10.1098/rsif.2024.0276. Epub 2024 Oct 2.

Abstract

Fatigue curves quantify fish swimming performance, providing information about the time ([Formula: see text]) fish can swim against a steady flow velocity () before fatiguing. Such curves represent a key tool for many applications in ecological engineering, especially for fish pass design and management. Despite years of research, though, our current ability to model fatigue curves still lacks theoretical foundations and relies primarily on fitting empirical data, as obtained from time-consuming and costly experiments. In the present article, we address this shortcoming by proposing a theoretical analysis that builds upon concepts of fish hydrodynamics to derive scaling laws linking statistical properties of [Formula: see text] to velocities , pertaining to the so-called burst range. Theoretical arguments, in the present study, suggest that the proposed scaling laws may hold true for all fish species and sizes. A new experimental database obtained from over 800 trials and five small-sized Cypriniformes support theoretical predictions satisfactorily and calls for further experiments on more fish species and sizes to confirm their general validity.

摘要

疲劳曲线量化了鱼类的游泳性能,提供了有关鱼类在疲劳前能够对抗稳定流速()游泳的时间([公式:见正文])的信息。这些曲线是生态工程学中许多应用的关键工具,特别是在鱼类洄游通道的设计和管理方面。然而,尽管经过多年的研究,我们目前建模疲劳曲线的能力仍然缺乏理论基础,主要依赖于从耗时且昂贵的实验中获得的经验数据拟合。在本文中,我们通过提出一个理论分析来解决这个缺点,该分析基于鱼类水动力学的概念,推导出将[公式:见正文]的统计特性与属于所谓的爆发范围的速度()相关联的比例定律。本研究中的理论论证表明,所提出的比例定律可能适用于所有鱼类物种和大小。一个新的实验数据库是由 800 多次试验和 5 种小型鲤科鱼类获得的,该数据库令人满意地支持了理论预测,并呼吁对更多的鱼类物种和大小进行进一步的实验,以确认其普遍有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/26a6/11444792/f9ce5a3c8004/rsif.2024.0276.f001.jpg

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