首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Study on the aerodynamic noise of internal flow of regenerative flow compressors for a fuel-cell car
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Study on the aerodynamic noise of internal flow of regenerative flow compressors for a fuel-cell car

机译:燃料电池汽车再生流压缩机内部流动的空气动力学噪声研究

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The regenerative flow compressor used in fuel-cell cars generates high aerodynamic noise, which is the main source of noise. Compared with the research on centrifugal or axial turbomachinery, research on the noise of regenerative flow compressors is far from adequate. This paper presents the on-going work on it at Tongji University based on both experimental and computational works. In this study, a three-dimensional unsteady computational fluid dynamic model of the compressor was constructed with the large eddy approach. The pressure fluctuation, vortex noise source and Ffowcs William-Hawkings (FW-H) method were used to analyze the characteristics of the aerodynamic noise sources. Additionally, the far-field aerodynamic noise generated by the internal flow of the compressor was predicted using the aeroacoustic finite element method. The simulation results were validated with the experimental data. It was found that combining the fluid dynamic model and aeroacoustic finite element analysis promising results for aerodynamic noise prediction of compressors could be produced. The effects of the impeller parameters on the aerodynamic noise of the compressor were also studied.
机译:燃料电池汽车中使用的蓄热式流动压缩机会产生很大的空气动力学噪声,这是噪声的主要来源。与对离心式或轴流式涡轮机械的研究相比,对回旋式压缩机的噪声研究还远远不够。本文基于实验和计算工作,介绍了同济大学正在进行的工作。在这项研究中,使用大涡流方法构建了压缩机的三维非定常计算流体动力学模型。利用压力波动,涡流噪声源和Ffowcs William-Hawkings(FW-H)方法分析了气动噪声源的特性。此外,使用空气声有限元方法预测了由压缩机内部流动产生的远场空气动力学噪声。仿真结果得到了实验数据的验证。研究发现,将流体动力学模型与空气声有限元分析相结合,可以为压缩机的空气动力学噪声预测提供有希望的结果。还研究了叶轮参数对压缩机空气动力噪声的影响。

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