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首页> 外文期刊>International journal of aerospace engineering >Axial Spacing Effects on Rotor-Rotor Interaction Noise and Vibration in a Contra-Rotating Fan
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Axial Spacing Effects on Rotor-Rotor Interaction Noise and Vibration in a Contra-Rotating Fan

机译:对旋转风扇中转子转子相互作用噪声和振动的轴向间距效应

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Because of the potential technical advantages, the contra-rotation technology has become a renewed interest in aviation and other applications. Contra-rotation increases efficiency in comparison with the single-rotor design, but this advantage is not fully harnessed. The axial spacing of two-stage contra-rotating blade rows has a significant impact on a contra-rotating fan/compressor. The results show that with a contra-rotation pattern, the strong unsteadiness of two-stage rotors is caused by the rotor-rotor interaction. The unsteadiness of rotor 1 is caused by the potential disturbance, and the upstream wake leads to the strong unsteadiness of rotor 2. With the increase of axial spacing, the rotor-rotor interaction is weakened, while unsteady features of two-stage rotor blades tend to be consistent. The acoustic and vibration effects of axial spacing are studied. It is found that the axial spacing has great influence of aerodynamic noise. The mean value of sound pressure level decreases by 17.2?dB in total when the axial spacing increased to 1.1 chord from 0.3 chord. For the accuracy of calculation, the scattering effect of the casing wall should be considered in the prediction of the noise. The axial spacing does not have obvious effects on the natural frequencies of the two-stage rotor blades but has certain effect on blade deformation.
机译:由于潜在的技术优势,对抗旋转技术已成为对航空和其他应用的重新兴趣。与单转子设计相比,对比旋转会提高效率,但是没有完全利用这种优势。两级对抗旋转刀片行的轴向间距对抗旋转风扇/压缩机具有显着影响。结果表明,通过对抗旋转图案,两级转子的强不稳定性是由转子 - 转子相互作用引起的。转子1的不稳定性是由电位干扰引起的,并且上游唤醒导致转子2的强不稳定。随着轴向间距的增加,转子 - 转子相互作用被削弱,而两级转子叶片的不稳定特征趋于削弱保持一致。研究了轴向间距的声学和振动效应。发现轴向间距对空气动力学噪声具有很大的影响。当轴向间距增加到0.3弦的轴向间距增加到1.1和弦时,声压水平的平均值降低了17.2·DB。为了计算的准确性,应考虑壳壁的散射效果在预测噪声中。轴向间距对两级转子叶片的固有频率没有明显影响,但对叶片变形有一定的效果。

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