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使用气泡 DPIV 测量海豚游泳产生的水动力。

Measurement of hydrodynamic force generation by swimming dolphins using bubble DPIV.

机构信息

Department of Biology, West Chester University, West Chester, PA 19383, USA.

出版信息

J Exp Biol. 2014 Jan 15;217(Pt 2):252-60. doi: 10.1242/jeb.087924.

Abstract

Attempts to measure the propulsive forces produced by swimming dolphins have been limited. Previous uses of computational hydrodynamic models and gliding experiments have provided estimates of thrust production by dolphins, but these were indirect tests that relied on various assumptions. The thrust produced by two actively swimming bottlenose dolphins (Tursiops truncatus) was directly measured using digital particle image velocimetry (DPIV). For dolphins swimming in a large outdoor pool, the DPIV method used illuminated microbubbles that were generated in a narrow sheet from a finely porous hose and a compressed air source. The movement of the bubbles was tracked with a high-speed video camera. Dolphins swam at speeds of 0.7 to 3.4 m s(-1) within the bubble sheet oriented along the midsagittal plane of the animal. The wake of the dolphin was visualized as the microbubbles were displaced because of the action of the propulsive flukes and jet flow. The oscillations of the dolphin flukes were shown to generate strong vortices in the wake. Thrust production was measured from the vortex strength through the Kutta-Joukowski theorem of aerodynamics. The dolphins generated up to 700 N during small amplitude swimming and up to 1468 N during large amplitude starts. The results of this study demonstrated that bubble DPIV can be used effectively to measure the thrust produced by large-bodied dolphins.

摘要

测量游泳海豚产生的推进力的尝试受到了限制。先前使用计算流体动力学模型和滑翔实验已经提供了海豚产生推力的估计值,但这些都是间接测试,依赖于各种假设。使用数字粒子图像测速(DPIV)直接测量了两只主动游泳的宽吻海豚(Tursiops truncatus)产生的推力。对于在大型户外游泳池中游泳的海豚,DPIV 方法使用从细孔软管和压缩空气源产生的狭窄薄片中的照明微泡。用高速摄像机跟踪气泡的运动。海豚在气泡片内以 0.7 至 3.4 m s(-1)的速度游泳,气泡片沿动物的中矢状面定向。由于推进鳍和射流的作用,海豚的尾流被可视化为微泡的位移。通过空气动力学的 Kutta-Joukowski 定理,从涡旋强度测量推力产生。海豚在小幅度游泳时产生高达 700 N 的力,在大幅度起动时产生高达 1468 N 的力。这项研究的结果表明,气泡 DPIV 可以有效地用于测量大型海豚产生的推力。

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