论文标题

合并起来和俯仰对单个和串联箔的推进的影响

Effect of combined heaving and pitching on propulsion of single and tandem flapping foils

论文作者

Hegde, Amit S., Gurugubelli, Pardha S., Joshi, Vaibhav

论文摘要

在这项研究中,我们介绍了两维数值研究,以了解非二维振幅的综合效果从0到1不等,而音高幅度范围为0到30,在Reynolds Number Number 1100和频率降低的单个和串联箔系统的推进性能上,幅度为0到30。最初,由于单个箔的运动学参数,我们对推力产生进行了系统分析。有效的攻击角度和箔的投影区域的意义在解释了升力和阻力力的动态及其与推进的关系时。接下来,我们研究流向膜系统推进系统的流向间隙和运动学参数之间的关系。我们表明,推进性能在很大程度上取决于上游尾流与下游箔的相互作用以及由于箔之间的间隙而引起的相互作用的时机。通过对照体积分析,已经研究了时间平均压力和流向速度,以解释运动学参数对流体动力的影响。通常在文献中,尾流中喷气的形成归因于推力产生。但是,在这项研究中,我们强调并显示了唤醒时间平均压力在预测推力方面的意义。该研究以三维串联箔的三维证明得出结论,以理解由于幅度较大的拍打和尾翼相互作用而导致的三维效应。

In this study, we present two and three-dimensional numerical investigation to understand the combined effects of the non-dimensional heave amplitude varying from 0 to 1 and the pitch amplitude ranging from 0 to 30 on the propulsive performance for a single and tandem foil system at Reynolds number 1100 and reduced frequency 0.2. We initially present a systematic analysis on the thrust generation due to the kinematic parameters for a single foil. The significance of effective angle of attack and the projected area of the foil has been emphasized in explaining the dynamics of lift and drag forces and their relationship with the propulsion. We next investigate the relation between the streamwise gap and kinematic parameters on propulsion for the tandem foil system. We show that the propulsive performance strongly depends on the upstream wake interacting with the downstream foil, and the timing of the interaction due to the gap between the foils. Through a control volume analysis, the time-averaged pressure and streamwise velocity have been investigated to explain the effect of kinematic parameters on the hydrodynamic forces. Typically in the literature, the formation of jet in the wake has been attributed to thrust generation. However, in this study, we emphasize and show the significance of the time-averaged pressure in the wake apart from the streamwise velocity (jet) for predicting the thrust forces. The study is concluded with a three-dimensional demonstration of the tandem foils to understand the possible three-dimensional effects due to the large amplitude flapping and wake-foil interaction.

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