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Experimental Measurement of Dolphin Thrust Generated during a Tail Stand Using DPIV

机译:使用DPIV的尾架产生的海豚推力的实验测量

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摘要

Estimation of force generated by dolphins has long been debated. The problem was that indirect estimates of force production for dolphins resulted in low values that could not be validated. Bubble digital particle image velocimetry (DPIV) measured hydrodynamic force production for swimming dolphins and demonstrated high force production. To validate the bubble DPIV and reconcile force production measurements, two bottlenose dolphins (Tursiops truncatus) performing tail stands were measured with bubble DPIV. Microbubbles were generated from a finely porous hose and compressed air source. Displacement of the bubbles by the propulsive motions of the dolphin was tracked with a high-speed video camera. Oscillations of the dolphin flukes generated strong vortices and a downward directed jet flow into the wake. Application of the Kutta–Joukowski theorem measuring vortex circulations yielded forces up to 997.3 N. Another video camera recorded body height above the water surface to determine the mass-force of the dolphin above the water surface. For the dolphin to hold its position above the water surface, the mass-force approximately balanced the vertical hydrodynamic force from the flukes. The results demonstrated the fluke motions generate high sustained forces roughly equal to the dolphin’s weight out of the water. Bubble DPIV validated high forces measured previously for thrust generated in swimming by animals and demonstrated a more accurate technique compared to standard aerodynamic analysis.
机译:对海豚产生的力的估计一直存在争议。问题在于,对海豚产力的间接估计导致了无法验证的低值。气泡数字粒子图像测速仪(DPIV)测量了游泳海豚的水动力产生,并证明了高动力产生。为了验证气泡DPIV和调和力产生的测量结果,使用气泡DPIV测量了执行尾部站立的两只宽吻海豚(Tursiops truncatus)。微气泡是由细孔软管和压缩空气源产生的。用高速摄像机跟踪了海豚推进运动引起的气泡位移。海豚吸积物的振荡会产生强烈的涡流,并且向下的射流会进入尾流。应用Kutta–Joukowski定理测量涡旋环流产生的力高达997.3N。另一台摄像机记录了水面以上的体高,以确定海豚在水面以上的质量力。为了使海豚在水面上方保持其位置,质量力大致平衡了来自吸虫的垂直水动力。结果表明,fl幸运动产生的高持续力大约等于海豚从水中引出的重量。 Bubble DPIV验证了先前对动物游泳产生的推力所测得的高力,并证明了与标准空气动力学分析相比更精确的技术。

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