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Influence of blade aerodynamic model on the prediction of helicopter high-frequency airloads

机译:叶片气动模型对直升机高频空载预测的影响

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摘要

Brown’s vorticity transport model has been used to investigate the influence of the blade aerodynamic model on the accuracy with which the high-frequency airloads associated with helicopter blade–vortex interactions can be predicted. The model yields an accurate representation of the wake structure yet allows significant flexibility in the way that the blade loading can be represented. A simple lifting-line model and a somewhat more sophisticated liftingchord model, based on unsteady thin aerofoil theory, are compared. A marked improvement in the accuracy of the predicted high-frequency airloads of the higher harmonic control aeroacoustic rotor is obtained when the liftingchord model is used instead of the lifting-line approach, and the quality of the prediction is affected less by the computational resolution of the wake. The lifting-line model overpredicts the amplitude of the lift response to blade–vortex interactions as the computational grid is refined, exposing the fundamental deficiencies in this approach when modeling the aerodynamic response of the blade to interactions with vortices that are much smaller than its chord. The airloads that are predicted using the lifting-chord model are relatively insensitive to the resolution of the computation, and there are fundamental reasons to believe that properly converged numerical solutions may be attainable using this approach.
机译:布朗的涡度传输模型已用于研究叶片空气动力学模型对可预测与直升机叶片-涡旋相互作用相关的高频空气载荷的准确性的影响。该模型可以精确地表示出尾流结构,但可以通过表示叶片载荷的方式显着提高灵活性。比较了基于不稳定薄翼型理论的简单起吊线模型和更为复杂的起吊弦模型。当使用提升弦模型代替提升线方法时,高次谐波控制的气动声转子的预测高频空气载荷的准确性得到了显着提高,并且预测质量受到的计算分辨率影响较小唤醒。提升线模型在精确计算网格时会过度预测升力对叶片-涡流相互作用的响应幅度,从而在建模叶片对与小于其弦的旋涡相互作用的空气动力响应进行建模时,暴露了这种方法的基本缺陷。使用提升弦模型预测的空载对计算的分辨率相对不敏感,并且有基本的理由认为使用此方法可以实现适当收敛的数值解。

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  • 作者

    Kelly, Mary E.; Brown, Richard;

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  • 年度 2011
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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