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Experimental and numerical studies on the discrete noise about the cross-flow fan with block-shifted impellers

机译:错位叶轮错流风机离散噪声的实验和数值研究

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摘要

Experimental and numerical studies have been carried out to investigate the blade passing frequency (BPF) noise of a cross-flow fan (CFF) with the block-shifted impeller. Firstly, the aeroacoustic and aerodynamic features about the five different block-shifted impellers have been obtained experimentally. Secondly, the dynamic pressure sensors were put in the noise generating surfaces to investigate the pressure fluctuations generated by the shifted blocks in the near-field through the cross-correlation analysis. Thirdly, the two-dimensional (2D) unsteady flow field has been simulated by commercial CFD software and the vortex flow patterns and the unsteady force of the blade have been analyzed to detect the noise source about the CFF. Finally, the noise properties about the CFF were predicted by a hybrid method through the Farassat's equation and the surface pressure fluctuations were provided by the CFD simulations. A simplified theory model has also been built. The comparisons are made between the results of hybrid method and the theory model to validate the correctness of the noise prediction methods. The accuracy of these results was also evaluated by the corresponding experimental ones. The results indicate that the impellers with different block-shifted angles are the same in aerodynamic performance but different in the BPF noise.
机译:已经进行了实验和数值研究,以研究带有块移式叶轮的贯流风扇(CFF)的叶片通过频率(BPF)噪声。首先,已经通过实验获得了关于五个不同的块移叶轮的空气声学和空气动力学特征。其次,将动态压力传感器置于噪声产生表面中,以通过互相关分析来研究由近场中的移位块产生的压力波动。第三,使用商用CFD软件模拟了二维(2D)非恒定流场,并分析了涡流模式和叶片的非恒定力,以检测CFF周围的噪声源。最后,通过Farassat方程通过混合方法预测了CFF的噪声特性,并通过CFD模拟提供了表面压力波动。还建立了简化的理论模型。将混合方法的结果与理论模型进行比较,以验证噪声预测方法的正确性。这些结果的准确性也通过相应的实验来评估。结果表明,具有不同块偏移角的叶轮的空气动力学性能相同,但BPF噪声不同。

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  • 来源
    《Noise & Vibration in Industry》 |2012年第2期|p.11|共1页
  • 作者

    You Li;

  • 作者单位

    Department of Mechanical and Power Engineering, Shanghai Jiaotong University, China;

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  • 正文语种 eng
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