期刊文献+

EXPERIMENTAL INVESTIGATION OF ROTATING STALL FOR A LOW-SPEED CENTRIFUGAL COMPRESSOR

EXPERIMENTAL INVESTIGATION OF ROTATING STALL FOR A LOW-SPEED CENTRIFUGAL COMPRESSOR
下载PDF
导出
摘要 Unsteady flows and rotating stall of a low-speed centrifugal compressor are investigated by measuring vaneless diffuser wall static pressure fluctuation and internal flow fields at different small flow fluxes. During the experiment, firstly the real time static pressure fluctuations on the vaneless diffuser shroud at different circumferential and radial position were acquired by high-frequency dynamic pressure transducers. Discrete Fourier transformation analysis and cross-correlation analysis were applied to the experimental results to ascertain the rotating stall beginning operation conditions and stall cells numbers and rotating speed. Secondly, the vaneless diffuser inlet flow angle distribution along diffuser width direction was acquired by single hotwire, which was compared with SENOO's analysis results. At last, the internal flow fields of the centrifugal compressor were investigated with a particle image velocimetry (PIV) system at different small flow fluxes. The flow field development of vaneless diffuser and blade flow passage are given at rotating stall conditions. The experiments enrich the understanding of rotating stall flow phenomenon of the low-speed centrifugal compressor and provide full experiment data for designing high performance centrifugal compressor. Unsteady flows and rotating stall of a low-speed centrifugal compressor are investigated by measuring vaneless diffuser wall static pressure fluctuation and internal flow fields at different small flow fluxes. During the experiment, firstly the real time static pressure fluctuations on the vaneless diffuser shroud at different circumferential and radial position were acquired by high-frequency dynamic pressure transducers. Discrete Fourier transformation analysis and cross-correlation analysis were applied to the experimental results to ascertain the rotating stall beginning operation conditions and stall cells numbers and rotating speed. Secondly, the vaneless diffuser inlet flow angle distribution along diffuser width direction was acquired by single hotwire, which was compared with SENOO's analysis results. At last, the internal flow fields of the centrifugal compressor were investigated with a particle image velocimetry (PIV) system at different small flow fluxes. The flow field development of vaneless diffuser and blade flow passage are given at rotating stall conditions. The experiments enrich the understanding of rotating stall flow phenomenon of the low-speed centrifugal compressor and provide full experiment data for designing high performance centrifugal compressor.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第3期76-83,共8页 中国机械工程学报(英文版)
基金 Honeywell Corporation,China
关键词 Rotating stall Centrifugal compressor Vaneless diffuser Particle image velocimetry (PIV) Rotating stall Centrifugal compressor Vaneless diffuser Particle image velocimetry (PIV)
  • 相关文献

参考文献12

  • 1TRAMM P C, DEAN JR R C. Centrifugal compressor and pump stabi- lity, stall and surge [M]. New York: ASME, 1976.
  • 2LAKSHMINARAYANA B, RUNSTADLER P Jr. Measurement methods in rotating components of turbomachinery[M]. New York: ASME, 1980,
  • 3JANSEN W, Steady fluid flow in a radial vaneless diffuser [J]. Journal of Basic Engineering, 1964 (86): 607-619.
  • 4SENOO Y, ISHIDA M, Behavior of severely asymmetric flow in a vaneless diffuser [J]. Journal of Engineering for Power, 1975 (97): 375-387.
  • 5TOYAMA P C, RUNSTEDLER P E JR, DEAN JR R C. An experimental study of surge in centrifugal compressors[J]. Journal of Fluids Engineering, 1977 (99): 115-131.
  • 6ABDELHAMID A N, COLWILL W H, BARROWS J F. Experimental investigation of unsteady phenomenon in vaneless radial diffuser [J]. Journal of Engineering for Power, 1979 (101): 52 60.
  • 7VAN DEN BRAEMBUSSCHE R, FRIGNE P, ROUSTAN M. Rotating nonuniform flow in radial compressors [R]. AGARD Cp-282, 1980.
  • 8SENOO Y, KINOSHITA Y. Influence of inlet flow conditions and geometries of centrifugal vaneless diffuser on critical flow angle for reverse flow [J]. Journal of Fluids Engineering, 1977 (99): 98 103.
  • 9SENOO Y, KINOSHITA Y. Limits of rotating stall and stall in vaneless diffuser of centrifugal compressors [R]. ASME Paper, 78-GT-19.
  • 10TAKUR S, LIN W L, WRIGHT J, et al. Computational modeling of low pressure fan [R]. ASME Paper, 2000-GT-621.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部