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评估褐鳟(Salmo trutta)在复杂水流环境中的水动力空间利用:回归第一原理

Assessing hydrodynamic space use of brown trout, Salmo trutta, in a complex flow environment: a return to first principles.

作者信息

Kerr James R, Manes Costantino, Kemp Paul S

机构信息

International Centre for Ecohydraulics Research, Faculty of Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK

International Centre for Ecohydraulics Research, Faculty of Engineering and the Environment, University of Southampton, Highfield, Southampton SO17 1BJ, UK.

出版信息

J Exp Biol. 2016 Nov 1;219(Pt 21):3480-3491. doi: 10.1242/jeb.134775. Epub 2016 Sep 2.

Abstract

It is commonly assumed that stream-dwelling fish should select positions where they can reduce energetic costs relative to benefits gained and enhance fitness. However, the selection of appropriate hydrodynamic metrics that predict space use is the subject of recent debate and a cause of controversy. This is for three reasons: (1) flow characteristics are often oversimplified, (2) confounding variables are not always controlled and (3) there is limited understanding of the explanatory mechanisms that underpin the biophysical interactions between fish and their hydrodynamic environment. This study investigated the space use of brown trout, Salmo trutta, in a complex hydrodynamic flow field created using an array of different sized vertically oriented cylinders in a large open-channel flume in which confounding variables were controlled. A hydrodynamic drag function (D) based on single-point time-averaged velocity statistics that incorporates the influence of turbulent fluctuations was used to infer the energetic cost of steady swimming. Novel hydrodynamic preference curves were developed and used to assess the appropriateness of D as a descriptor of space use compared with other commonly used metrics. Zones in which performance-enhancing swimming behaviours (e.g. Kármán gaiting, entraining and bow riding) that enable fish to hold position while reducing energetic costs (termed 'specialised behaviours') were identified and occupancy was recorded. We demonstrate that energy conservation strategies play a key role in space use in an energetically taxing environment with the majority of trout groups choosing to frequently occupy areas in which specialised behaviours may be adopted or by selecting low-drag regions.

摘要

人们通常认为,生活在溪流中的鱼类应该选择这样的位置,即相对于所获得的益处而言,它们能够降低能量消耗并增强适应性。然而,选择合适的流体动力学指标来预测空间利用是近期争论的主题,也是争议的一个根源。原因有三点:(1)水流特征常常被过度简化;(2)混杂变量并非总能得到控制;(3)对于支撑鱼类与其流体动力学环境之间生物物理相互作用的解释机制了解有限。本研究在一个大型明渠水槽中,利用一系列不同尺寸的垂直放置的圆柱体创建了一个复杂的流体动力学流场,在该流场中控制了混杂变量,以此来研究褐鳟(Salmo trutta)的空间利用情况。基于单点时间平均速度统计数据并纳入湍流波动影响的流体动力学阻力函数(D),被用于推断稳定游泳的能量消耗。我们开发了新的流体动力学偏好曲线,并将其用于评估与其他常用指标相比,D作为空间利用描述符的适用性。确定了能使鱼类在降低能量消耗的同时保持位置的性能增强型游泳行为(如卡门步态、夹带和弓背骑行,称为“特殊行为”)出现的区域,并记录了鱼类在这些区域的占据情况。我们证明,在一个能量消耗较大的环境中,节能策略在空间利用中起着关键作用,大多数鳟鱼群体会选择频繁占据可能采用特殊行为的区域,或者选择低阻力区域。

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