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桡足类对伯格斯涡旋的响应:解析桡足类与湍流的相互作用

Copepods' Response to Burgers' Vortex: Deconstructing Interactions of Copepods with Turbulence.

作者信息

Webster D R, Young D L, Yen J

机构信息

*School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA; School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA

*School of Civil and Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA; School of Biology, Georgia Institute of Technology, Atlanta, GA 30332, USA.

出版信息

Integr Comp Biol. 2015 Oct;55(4):706-18. doi: 10.1093/icb/icv054. Epub 2015 May 21.

Abstract

This study examined the behavioral response of two marine copepods, Acartia tonsa and Temora longicornis, to a Burgers' vortex intended to mimic the characteristics of a turbulent vortex that a copepod is likely to encounter in the coastal or near-surface zone. Behavioral assays of copepods were conducted for two vortices that correspond to turbulent conditions with mean dissipation rates of turbulence of 0.009 and 0.096 cm(2) s(-3) (denoted turbulence level 2 and level 3, respectively). In particular, the Burgers' vortex parameters (i.e., circulation and rate of axial strain rate) were specified to match a vortex corresponding to the median rate of dissipation due to viscosity for each target level of turbulence. Three-dimensional trajectories were quantified for analysis of swimming kinematics and response to hydrodynamic cues. Acartia tonsa did not significantly respond to the vortex corresponding to turbulence level 2. In contrast, A. tonsa significantly altered their swimming behavior in the turbulence-level-3 vortex, including increased relative speed of swimming, angle of alignment of the trajectory with the axis of the vortex, ratio of net-to-gross displacement, and acceleration during escape, along with decreased turn frequency (relative to stagnant control conditions). Further, the location of A. tonsa escapes was preferentially in the core of the stronger vortex, indicating that the hydrodynamic cue triggering the distinctive escape behavior was vorticity. In contrast, T. longicornis did not reveal a behavioral response to either the turbulence level 2 or the level 3 vortex.

摘要

本研究考察了两种海洋桡足类动物——强壮箭虫(Acartia tonsa)和长角哲水蚤(Temora longicornis)对伯格斯涡的行为反应,该涡旨在模拟桡足类动物在沿海或近表层区域可能遇到的湍流涡的特征。针对两个对应于平均湍流耗散率分别为0.009和0.096 cm² s⁻³的湍流条件的涡(分别表示为湍流水平2和水平3)进行了桡足类动物的行为测定。特别地,指定伯格斯涡参数(即环流和轴向应变率)以匹配与每个目标湍流水平下由于粘性导致的中值耗散率相对应的涡。对三维轨迹进行了量化,以分析游泳运动学和对流体动力线索的反应。强壮箭虫对对应于湍流水平2的涡没有显著反应。相比之下,强壮箭虫在湍流水平3的涡中显著改变了它们的游泳行为,包括游泳相对速度增加、轨迹与涡轴的对齐角度、净位移与总位移的比率以及逃逸期间的加速度增加,同时转向频率降低(相对于静止对照条件)。此外,强壮箭虫逃逸的位置优先在较强涡的核心,这表明触发独特逃逸行为的流体动力线索是涡度。相比之下,长角哲水蚤对湍流水平2或水平3的涡均未表现出行为反应。

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