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首页> 外文期刊>Journal of the American Helicopter Society >An Engineering Modification of the Blade Element Momentum Equation for Vertical Descent: An Autorotation Case Study
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An Engineering Modification of the Blade Element Momentum Equation for Vertical Descent: An Autorotation Case Study

机译:垂直下降叶片元素动量方程的工程修正:自转案例研究

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An engineering modification of blade element/momentum theory is applied to describe the vertical autorotation of helicopter rotors. A full non-linear aerodynamic model is considered for the airfoils, taking into account the dependence of lift and drag coefficients on both the angle of attack and the Reynolds number. The proposed model, which has been validated in previous work, has allowed the identification of different autorotation modes, which depend on the descent velocity and the twist of the rotor blades. These modes present different radial distributions of driven and driving blade regions, as well as different radial up wash/downwash patterns. The number of blade sections with zero tangential force, the existence of a downwash region in the rotor disk, the stability of the autorotation state, and the overall rotor autorotation efficiency, are all analyzed in terms of the flight velocity and the characteristics of the rotor. It is shown that, in vertical autorotation, larger blade twist leads to smaller values of descent velocity for a given thrust generated by the rotor in the autorotational state.
机译:对叶片要素/动量理论进行了工程修改,以描述直升机旋翼的垂直自转。考虑到升力和阻力系数对迎角和雷诺数的依赖性,为翼型考虑了完整的非线性空气动力学模型。所提出的模型已经在先前的工作中得到了验证,已经允许识别不同的自动旋转模式,这些模式取决于下降速度和转子叶片的扭曲。这些模式呈现出从动和驱动叶片区域的不同径向分布,以及不同的径向上洗/下洗模式。切向力为零的叶片部分的数量,转子盘中存在向下冲洗区域,自转状态的稳定性以及整个转子的自转效率,均根据飞行速度和转子的特性进行了分析。 。结果表明,在垂直自动旋转中,较大的叶片扭曲导致转子在自动旋转状态下产生的给定推力的下降速度值较小。

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