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Hydrodynamic properties of fin whale flippers predict maximum rolling performance

机译:鳍鲸鳍状肢的流体力学特性可预测最大滚动性能

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Maneuverability is one of the most important and least understood aspects of animal locomotion. The hydrofoil-like flippers of cetaceans are thought to function as control surfaces that effect maneuvers, but quantitative tests of this hypothesis have been lacking. Here, we constructed a simple hydrodynamic model to predict the longitudinal-axis roll performance of fin whales, and we tested its predictions against kinematic data recorded by on-board movement sensors from 27 free-swimming fin whales. We found that for a given swimming speed and roll excursion, the roll velocity of fin whales calculated from our field data agrees well with that predicted by our hydrodynamic model. Although fluke and body torsion may further influence performance, our results indicate that lift generated by the flippers is sufficient to drive most of the longitudinal-axis rolls used by fin whales for feeding and maneuvering.
机译:可操作性是动物运动的最重要和最缺乏了解的方面之一。鲸类的像水翼一样的鳍状肢被认为可以起到控制操纵面的作用,但是还缺乏对该假设的定量检验。在这里,我们构建了一个简单的流体动力学模型来预测长须鲸的纵轴滚动性能,并针对船上运动传感器记录的来自27个自由游动的长须鲸的运动学数据测试了其预测。我们发现,对于给定的游泳速度和侧倾偏移,根据我们的现场数据计算出的长须鲸侧倾速度与我们的水动力模型预测的相吻合。尽管fl虫和身体的扭曲可能会进一步影响性能,但我们的结果表明,鳍状肢产生的升力足以驱动大鳍鲸用于进食和操纵的大部分纵轴轧辊。

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