家电科技 ›› 2021, Vol. 0 ›› Issue (zk): 299-302.doi: 10.19784/j.cnki.issn1672-0172.2021.99.071

• 第三部分 噪声与振动控制 • 上一篇    下一篇

表面振速重建技术在冰箱压缩机空腔模态识别中的应用

黄刚, 高煜, 李银龙, 陈新杰   

  1. 安徽美芝制冷设备有限公司 安徽合肥 230001
  • 出版日期:2021-11-25 发布日期:2021-12-22
  • 通讯作者: 高煜,E-mail:gaoyu9@midea.com。
  • 作者简介:黄刚,本科。研究方向:制冷技术。E-mail:huanggang@chinagmcc.com。

Application of surface vibration reconstruction technology in cavity mode identification of refrigerator compressor

HANG Gang, GAO Yu, LI Yinlong, CHEN Xinjie   

  1. Anhui Meizhi Compressor Co., Ltd. Hefei 230001
  • Online:2021-11-25 Published:2021-12-22

摘要: 冰箱压缩机的内部空腔共振会造成壳体耦合振动,产生中、低频振动噪声,且有别于壳体结构自身的固有频率,有重要的研究意义。首先阐述了封闭空间内空腔模态及其与壳体耦合,在壳体产生振动响应的机理;再利用有限元方法(FEM)计算出压缩机空腔模态频率、振型及其与壳体耦合后产生的壳体振速分布;最后利用球面近场声全息方法,识别出壳体表面的振速分布,与有限元计算结果一致,证明了利用有限元方法对压缩机内部空腔-壳体耦合共振进行分析的正确性,和表面振速重建技术在空腔模态识别中的有效性。

关键词: 冰箱压缩机, 空腔共振, 流固耦合, 球面近场声全息, 振速重建

Abstract: The cavity resonance of the refrigerator compressor causes the coupling vibration of the shell to produce low and medium noise, which is different from the natural frequency of the shell and has important research significance. This paper first describes the vibration response mechanism of the cavity mode and the cavity-shell coupling, then the finite element method (FEM) is used to calculate the compressor cavity mode frequency, mode shape and velocity distribution. Finally, the spherical nearfield acoustic holography method is utilized to identify the vibration velocity distribution on the surface, and the reconstruction results are consistent with the calculation results of the FEM, which proves the correctness of the cavity-shell coupling resonance analysis based on the FEM and the effectiveness of the surface velocity reconstruction technique in cavity mode identification.

Key words: Refrigerator compressor, Cavity resonance, Fluid-structure coupling, Spherical nearfield acoustic holography, Vibration velocity reconstruction

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