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Influence of blade aerodynamic model on prediction of helicopter rotor aeroacoustic signatures

机译:叶片空气动力学模型对直升机旋翼空气声特征预测的影响

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摘要

Brown’s vorticity transport model has been used to investigate how the local blade aerodynamic model influences the quality of the prediction of the high-frequency airloads associated with blade–vortex interactions, and thus the accuracy with which the acoustic signature of a helicopter rotor can be predicted. The vorticity transport model can accurately resolve the structure of the wake of the rotor and allows significant flexibility in the way that the blade loading can be represented. The Second Higher-Harmonic Control Aeroacoustics Rotor Test was initiated to provide experimental insight into the acoustic signature of a rotor in cases of strong blade–vortex interaction. Predictions of two models for the local blade aerodynamics are compared with the test data. A marked improvement in accuracy of the predicted high-frequency airloads and acoustic signature is obtained when a lifting-chord model for the blade aerodynamics is used instead of a lifting-line-type approach. Errors in the amplitude and phase of the acoustic peaks are reduced, and the quality of the prediction is affected to a lesser extent by the computational resolution of the wake, with the lifting-chord model producing the best representation of the distribution of sound pressure below the rotor.
机译:布朗的涡度传输模型已用于研究局部叶片空气动力学模型如何影响与叶片-涡旋相互作用相关的高频空气负荷的预测质量,从而可以预测直升机旋翼的声学特征的准确性。 。涡度传输模型可以准确地解析转子尾流的结构,并在表示叶片载荷的方式上具有很大的灵活性。启动了第二次高次谐波控制航空声学转子测试,目的是提供在叶片-涡旋相互作用强烈的情况下对转子的声学特征的实验见解。将两种模型对叶片局部空气动力学的预测与测试数据进行比较。当使用叶片空气动力学的提升弦模型代替提升线型方法时,可预测的高频空气载荷和声学特征的准确性得到了显着改善。声峰的幅度和相位误差减少,并且尾流的计算分辨率对预测的质量影响较小,其中升力弦模型可以在以下最佳地表示声压分布转子。

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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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