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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Numerical Investigation of the Effects of Nonsinusoidal Motion Trajectory on the Propulsion Mechanisms of a Flapping Airfoil
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Numerical Investigation of the Effects of Nonsinusoidal Motion Trajectory on the Propulsion Mechanisms of a Flapping Airfoil

机译:非网状运动轨迹对扑翼翼型推进机制的数值研究

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摘要

The effect of nonsinusoidal trajectory on the propulsive performances and the vortex shedding process behind a flapping airfoil is investigated in this study. A movement of a rigid NACA0012 airfoil undergoing a combined heaving and pitching motions at low Reynolds number (Re?=?11,000) is considered. An elliptic function with an adjustable parameter S (flattening parameter) is used to realize various nonsinusoidal trajectories of both motions. The two-dimensional (2D) unsteady and incompressible Navier–Stokes equation governing the flow over the flapping airfoil are resolved using the commercial software starccm+. It is shown that the nonsinusoidal flapping motion has a major effect on the propulsive performances of the flapping airfoil. Although the maximum propulsive efficiency is always achievable with sinusoidal trajectories, nonsinusoidal trajectories are found to considerably improve performance: a 110% increase of the thrust force was obtained in the best studied case. This improvement is mainly related to the modification of the heaving motion, more specifically the increase of the heaving speed at maximum pitching angle of the foil. The analysis of the flow vorticity and wake structure also enables to explain the drop of the propulsive efficiency for nonsinusoidal trajectories.
机译:在本研究中研究了非轴突轨迹对推进性能的影响和烤架翼型背后的涡旋脱落过程。考虑刚性NaCA0012翼型的刚性NaCa0012翼型的运动,在低雷诺数(RE?= 11,000)处于低雷诺数(RE?= 11,000)。具有可调节参数S(扁平化参数)的椭圆函数用于实现两个运动的各种非轴突轨迹。使用商业软件StarCcm +解决了用于扑翼翼型上的流量的二维(2D)不稳定和不可压缩的Navier-Stokes方程。结果表明,非脉络型拍打运动对拍打翼型的推进性能具有重要影响。虽然始终可以通过正弦轨迹始终实现最大推进效率,但发现非突出的轨迹很大程度上提高了性能:在最佳研究的情况下获得了110%的推力增加。这种改进主要与箔的最大俯仰角度更具体地涉及起重率的改变。流动涡度和唤醒结构的分析也能够解释非轴曲线轨迹的推进效率下降。

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