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首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Parametric Study of Dynamic Stall Flow Field With Synthetic Jet Actuation
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Parametric Study of Dynamic Stall Flow Field With Synthetic Jet Actuation

机译:合成射流驱动动态失速流场的参数研究

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摘要

A parametric study of the interaction between dynamic stall and a zero-net mass flux synthetic jet installed on a wing was investigated by identifying the dominant frequencies in the resulting flow field using spectral analysis. The instantaneous pressure distribution around an NACA 0020 wing was recorded by performing static and dynamic experiments using an open jet subsonic wind tunnel located at the aerodynamics laboratory of the University of New South Wales. The results obtained provided valuable insight into the interaction process. The oscillation frequency and its harmonics were identified in baseline dynamic experiments, as well as the jet frequency and offset frequencies with synthetic jet actuation. The offset frequencies, similar to beat frequencies, were found to be a dynamic effect and represented the complex and nonlinear interaction between dynamic stall and the synthetic jet. The study suggests that low amplitude synthetic jet actuation would be an effective method in enhancing the overall aerodynamic efficiency of the wing. This confirmed the viability of utilizing synthetic jets in dynamic stall control.
机译:通过使用频谱分析确定最终流场中的主导频率,研究了动态失速与安装在机翼上的零净质量通量合成射流之间相互作用的参数研究。通过使用位于新南威尔士大学空气动力学实验室的开放式亚音速风洞进行静态和动态实验,记录了NACA 0020机翼周围的瞬时压力分布。获得的结果提供了对交互过程的宝贵见解。在基线动态实验中确定了振荡频率及其谐波,以及合成喷射驱动下的喷射频率和偏移频率。偏移频率类似于拍频,被发现是一种动态效果,代表了动态失速和合成射流之间复杂而非线性的相互作用。研究表明,低振幅合成射流驱动将是提高机翼整体空气动力学效率的有效方法。这证实了在动态失速控制中利用合成射流的可行性。

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