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EXPERIMENTAL STUDY OF THE SPANWISE WAKE COMPRESSION OF A TRAPEZOIDAL PITCHING PANEL

机译:梯形俯仰板的平板尾迹压缩实验研究

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Aquatic animals can maneuver and propel themselves through a variety of means. Among these means, are the oscillation and undulation of the flukes and fins of different cetaceans and fishes. The motions of these species can be employed to develop thrust-producing, highly three-dimensional wakes. Recently, a great deal of interest in incorporating certain biological propulsion schemes into engineering designs has been generated. Experiments have shown that bio-inspired propulsors can develop large efficiencies, with some efficiencies being greater than those of a screw-propeller propulsion system. In the current work, stereoscopic particle image velocimetry (PIV) was used to characterize the wake produced by a rigid, trapezoidal pitching panel. Prior work has shown that one of the dominant parameters governing wake structure is the Strouhal number. Detailed analysis in terms of Strouhal number is the focus of the current work, and the Strouhal number range tested was from 0.17 to 0.56.
机译:水生动物可以通过各种方式进行操纵和自我推动。在这些方法中,有不同的鲸类和鱼类的鳞片和鳍的波动和起伏。这些物质的运动可以用来产生产生推力的高度三维苏醒。近来,已经产生了将某些生物推进方案结合到工程设计中的大量兴趣。实验表明,受生物启发的推进器可以产生很大的效率,其中有些效率高于螺旋桨推进系统。在当前的工作中,使用立体粒子图像测速(PIV)来表征由刚性梯形俯仰板产生的尾流。先前的工作表明,控制尾流结构的主要参数之一是斯特劳哈尔数。关于Strouhal数的详细分析是当前工作的重点,测试的Strouhal数范围是0.17至0.56。

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