首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Context-dependent responses to turbulence for an anguilliform swimming fish, Pacific lamprey, during passage of an experimental vertical-slot weir
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Context-dependent responses to turbulence for an anguilliform swimming fish, Pacific lamprey, during passage of an experimental vertical-slot weir

机译:在实验垂直槽堰通过期间,对昂贵游泳鱼的湍流湍流的依赖性反应

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Fish passage systems (fishways) have become the most common mitigation tool for improving the connectivity of migratory fish populations in ecosystems with barriers to movement. Because fishways often have high-velocity and high-turbulence environments, fish should seek low-energy movement paths during passage. We tested this hypothesis by analyzing the swimming paths of 90 adult Pacific lamprey (Entosphenus tridentatus) in response to hydraulic conditions when passing a vertical-slot weir in an experimental fishway. Varying hydraulic conditions were achieved by manipulating three variables: water velocity (1.2, 1.8, 2.4 m/s), vertical-slot length (0.33 m, 0.66 m, 1.00 m), and presence or absence of a turbulence-inducing structure. Turbulence parameters, such as turbulent kinetic energy (TKE), were quantified using an Acoustic Doppler Velocimeter (ADV). Pacific lamprey exhibited context-dependent behaviors in response to turbulence whereby lamprey were more likely to move towards areas of lower turbulence along their swimming paths, but only as the surrounding turbulence within the vertical-slot increased. In contrast, when the surrounding turbulence within the vertical-slot was low, Pacific lamprey became more likely to move towards areas of higher turbulence. The 'turbulence-avoidance' behaviors likely allowed passage of the hydraulic obstacle by reducing energy expenditure or physiological stress, while the 'turbulence-attraction' behaviors may have resulted from lamprey using turbulence as a mechanism for upstream orientation. Overall, our results provide new insight into how fish may use turbulence as an important sensory modality for perceiving the aquatic environment. (C) 2017 Elsevier B.V. All rights reserved.
机译:鱼类通道系统(鱼道)已成为提高生态系统中迁徙鱼群的连通性最常见的缓解工具,具有运动障碍。因为渔业往往具有高速度和高湍流环境,因此鱼类应该在通道期间寻求低能量运动路径。我们通过在经过实验鱼道中通过垂直槽堰的液压条件来分析90成人太平洋羊斑(恩酞特拉蒂塔)的游泳路径来测试这一假设。通过操纵三个变量来实现不同的液压条件:水速度(1.2,1.8,2.4m / s),垂直槽长度(0.33米,0.66米,1.00米),以及湍流诱导结构的存在或不存在。使用声学多普勒速度计(AV)量化湍流参数,例如湍流动能(TKE)。太平洋拉普术响应于湍流而表现出依赖于情境的行为,其中Lamprey更有可能沿着它们的游泳路径向下湍流的区域移动,而是仅随着垂直槽内的周围湍流增加。相反,当垂直槽内的周围湍流很低时,太平洋羊斑变得更加可能朝向更高湍流的区域移动。 “湍流 - 避免”行为可能通过降低能量消耗或生理应力来允许液压障碍物,而“湍流 - 吸引力”行为可能是由于湍流作为上游取向机制的湍流引起的。总体而言,我们的结果提供了对鱼类如何使用湍流作为感知水生环境的重要感官模塑的新见解。 (c)2017 Elsevier B.v.保留所有权利。

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