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首页> 外文期刊>Journal of the American Helicopter Society >Nonlinear Blade Stability for a Scaled Autogyro Rotor at High Advance Ratios
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Nonlinear Blade Stability for a Scaled Autogyro Rotor at High Advance Ratios

机译:标度自旋陀螺转子在高前进比下的非线性叶片稳定性

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Despite current research advances in aircraft dynamics and increased interest in the slowed rotor concept for high-speed compound helicopters, the stability of autogyro rotors remains partially understood, particularly at lightly loaded conditions and high advance ratios. In autorotation, the periodic behavior of a rotor blade is a complex nonlinear phenomenon, further complicated by the fact that the rotor speed is not held constant. The aim of the analysis presented in this article is to investigate the underlying mechanisms that can lead to rotation-flap blade instability at high advance ratios for a teetering autorotating rotor. The stability analysis was conducted via wind tunnel tests of a scaled autogyro model combined with numerical continuation and bifurcation analysis. The investigation assessed the effect of varying the flow speed, blade pitch angle, and rotor shaft tilt relative to the flow on the rotor performance and blade stability. The results revealed that rotor instability in autorotation is associated with the existence of fold bifurcations, which bound the control-input and design parameter space within which the rotor can autorotate. This instability occurs at a lightly loaded condition and at advance ratios close to 1 for the scaled model. Finally, it was also revealed that the rotor inability to autorotate was driven by blade stall.
机译:尽管当前在飞机动力学方面的研究取得了进步,并且人们对高速复合直升机的减慢旋翼概念越来越感兴趣,但是旋翼机旋翼的稳定性仍然得到部分了解,尤其是在轻载条件和高前进比的情况下。在自动旋转中,转子叶片的周期性行为是复杂的非线性现象,并且由于转子速度未保持恒定这一事实而变得更加复杂。本文中提出的分析的目的是研究导致摇摇欲坠的自动旋转转子在高进给比下导致旋转襟翼叶片不稳定性的潜在机理。稳定性分析是通过规模化自旋陀螺模型的风洞试验,结合数值连续性和分叉分析来进行的。该研究评估了改变流速,叶片桨距角和相对于流的转子轴倾斜对转子性能和叶片稳定性的影响。结果表明,转子自转的不稳定性与褶皱分叉的存在有关,褶皱分叉限制了转子可以自转的控制输入和设计参数空间。这种不稳定性在轻载条件下发生,并且比例模型的提前比接近1。最后,还揭示出转子无法自动旋转是由叶片失速驱动的。

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    《Journal of the American Helicopter Society 》 |2020年第1期| 012005.1-012005.19| 共19页
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    University of Bristol Bristol UK;

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