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Experimental Study of a Two-Joint Dolphinlike Propulsion Mechanism (lst Report, Experiment of SmaII Machine)

机译:两关节海豚状推进机制的实验研究(第一报告,SmaII机器实验)

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摘要

An experimental apparatus of the two-joint dolphinlike propulsion mechanism, which is com- posed of a streamlined body and a rectangular caudal fin, was developed. The first joint in the body part is driven by a stepping motor, the second joint at the end of the body is passively driven by springs. The required torque of the first joint is measured by strain gages. The experimental characteristics of the propulsive efficiency in a channel were investigated, and those were compared with the numerical ones obtained from the theory in the previous paper. The propulsive efficiency of the experiment is around 0.25 while that of the theory is 0.35~0.4. Next, the motion of the caudal fin was measured. The motion of the caudal fin in the experiment shows similar tendency to that in the theory. Finally, flow visualization around the mechanism was done by using the tydrogen bubble method. It was found that the flow around the body is almost not disturbed and that the wake area after the caudal fin becomes wider and wider as the flow goes ahead.
机译:开发了由流线型主体和矩形尾鳍组成的双关节海豚状推进机构的实验装置。主体部分中的第一关节由步进电机驱动,主体端部的第二关节由弹簧被动驱动。第一关节的所需扭矩通过应变计测量。研究了通道内推进效率的实验特性,并将其与从前一篇理论中获得的数值进行了比较。实验的推进效率约为0.25,理论值为0.35〜0.4。接下来,测量尾鳍的运动。实验中尾鳍的运动与理论中的趋势相似。最后,通过使用tybogen气泡法完成了围绕该机构的流动可视化。已经发现,围绕身体的流动几乎不受干扰,并且随着流动的进行,尾鳍之后的尾流区域变得越来越宽。

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