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EFFECTS OF HARMONIC VIBRATION ON CYCLOIDAL ROTOR PERFORMANCE

机译:谐波振动对摆线转子性能的影响

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Cycloidal rotors have the inherent ability to provide vectorized thrust with fast reaction times. However, their present efficiency levels restricts their routinely use as propulsion elements for air-vehicles. Efforts have been made to improve the performance of cycloidal rotors through the optimal combination of its geometric parameters. In the present work the performance improvement of cycloidal rotors is demonstrated using a different approach, namely by imposing an unsteady change on the dynamics and structure of the vortices developed around the blades. This required change on the flow field, around the blades, was applied by adding an harmonic vibration to the traditional cycloidal movement of the blades, thus causing the blades to vibrate as they describe their oscillating pitch movement. This research on the effect of harmonic vibration, on lift and drag coefficients, was done first for a single blade profile, and later for a full cycloidal rotor, and is based on the Takens reconstruction theorem and Poincare map. Therefore, diverse test cases and conditions were considered: a single static airfoil, an oscillating blade profile, and a complete cycloidal rotor. We concluded that the optimal combination of harmonic vibration parameters, specifically; amplitude, phase angle and vibration frequency, under adequately tuned design conditions, can have a beneficial effect on cycloidal rotor performance.
机译:摆线转子具有固有的能力,可以以快速的反应时间提供矢量化推力。然而,它们目前的效率水平限制了它们常规地用作航空器的推进元件。已经努力通过其几何参数的最佳组合来改善摆线转子的性能。在本工作中,使用不同的方法证明了摆线转子的性能提高,即通过对叶片周围形成的涡流的动力学和结构施加不稳定的改变。通过在叶片的传统摆线运动中增加谐波振动,从而对叶片周围的流场进行了所需的更改,从而使叶片在描述其摆动螺距运动时发生振动。这项针对谐波振动对升力和风阻系数影响的研究首先基于Takens重构定理和Poincare映射,然后针对单个叶片轮廓进行了研究,然后针对完整的摆线转子进行了研究。因此,考虑了多种测试案例和条件:单个静翼型,摆动叶片轮廓和完整的摆线转子。我们得出结论,谐波振动参数的最佳组合,特别是在适当调整的设计条件下,振幅,相位角和振动频率可能会对摆线转子的性能产生有利影响。

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