Chang Yu-Lin, Miyazawa Yasumasa, Béguer-Pon Mélanie
Institute of Marine Environmental Sciences and Technology, National Taiwan Normal University, Taipei, Taiwan.
Application Laboratory, Japan Agency for Marine-Earth Science and Technology, Yokohama, Japan.
PLoS One. 2017 Mar 2;12(3):e0172501. doi: 10.1371/journal.pone.0172501. eCollection 2017.
In this study, we explore the dynamical role of mesoscale eddies on fish larvae migration using the example of Subtropical Counter Current eddies and the migration of Japanese eel larvae in the western North Pacific Ocean. An idealized experiment is conducted to isolate the effects of eddies, and use a three-dimensional particle-tracking method to simulate virtual eel larvae (v-larvae) migration, including both horizontal and vertical swimming behaviors. The impact of eddies strongly depends on the swimming speed of v-larvae relative to the eddy speed. Eddies accelerate the movement of v-larvae that swim slower than the propagation speed of the eddy, whereas faster-swimming v-larvae are dragged by eddies. A modified stream function that incorporates biological swimming ability explains the non-uniform trapping of v-larvae in mesoscale eddies. A high swimming speed and/or a small eddy rotation speed results in a weak trapping capacity. Simulations of v-larvae migration in realistic cases of eddy fields indicate that the abundance of eddies significantly affects the duration of larval migration, with the effects being largely dependent on the larvae swimming speed. We noted a negative relationship between the observed annual eel recruitment index in Taiwan and the eddy index subtropical countercurrent (STCC) region, which suggests a potentially important role of mesoscale eddies in eel larvae migration.
在本研究中,我们以亚热带逆流涡旋以及日本鳗鲡幼体在北太平洋西部的洄游为例,探讨中尺度涡旋对鱼类幼体洄游的动态作用。开展了一项理想化实验以分离涡旋的影响,并使用三维粒子追踪方法来模拟虚拟鳗鲡幼体(v-幼体)的洄游,包括水平和垂直游动行为。涡旋的影响很大程度上取决于v-幼体相对于涡旋速度的游动速度。涡旋会加速游动速度慢于涡旋传播速度的v-幼体的移动,而游动速度较快的v-幼体则会被涡旋拖拽。一个纳入生物游动能力的修正流函数解释了v-幼体在中尺度涡旋中的非均匀捕获现象。高游动速度和/或小涡旋旋转速度会导致弱捕获能力。在实际涡旋场情况下对v-幼体洄游的模拟表明,涡旋的丰度显著影响幼体洄游的持续时间,其影响在很大程度上取决于幼体的游动速度。我们注意到台湾观测到的年度鳗鱼补充指数与亚热带逆流(STCC)区域的涡旋指数之间存在负相关关系,这表明中尺度涡旋在鳗鱼幼体洄游中可能具有重要作用。