• CN:11-2187/TH
  • ISSN:0577-6686

›› 2009, Vol. 45 ›› Issue (5): 311-316.

• 论文 • 上一篇    

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离心压缩机排气蜗壳内部流动分析与优化

冀春俊;王雅君;王学军;么立新   

  1. 大连理工大学能源与动力学院;沈阳鼓风机(集团)有限公司
  • 发布日期:2009-05-15

Analysis and Optimization of the Internal Flow in Centrifugal Compressor Volute

JI Chunjun;WANG Yajun;WANG Xuejun;YAO Lixin   

  1. School of Energy and Power Engineering, Dalian University of Technology Shenyang Blower Works (Group) Co., Ltd.
  • Published:2009-05-15

摘要: 利用计算流体动力学专业软件NUMECA对某离心压缩机末级流场(包括闭式叶轮、无叶扩压器、排气蜗壳)进行三维粘性流动的数值计算分析。以计算结果为依据,对等宽变高式排气蜗壳进行了优化设计,末级效率提高约4.5%。将改进方法用于另一台压缩机组的末级排气蜗壳,末级效率同样提高4.5%,由此总结出“焊接式排气蜗壳气动设计规范”,并将其应用于另一类典型的焊接式排气蜗壳——等高变宽式排气蜗壳的优化设计,末级效率提高约3%。大量的数值试验证明,所提出的设计方法具有很好的通用性,可以推广应用于所有的焊接式排气蜗壳设计。

关键词: 焊接式排气蜗壳, 离心压缩机, 数值模拟, 效率

Abstract: The 3D internal viscous flow in the last stage of a centrifugal compressor is analyzed numerically with commercial computational fluid dynamic software NUMECA. The geometric model includes the close-type impeller, the vaneless diffuser and the volute. Based on the analytic results, modifications to the constant width volute are proposed and the stage efficiency is increased by 4.5%. The same approach is applied on the last stage of another centrifugal compressor and the efficiency is also increased by 4.5%. Through summing up the effect of different parameters, the code for the aerodynamic design of the welding type volute is developed. The code is tested on another compressor with a constant height volute and the last stage efficiency is increased by 3%. Numerical experiments prove that the code can be used for the aerodynamic design of all welding type volutes.

Key words: Centrifugal compressor, Efficiency, Numerical simulation, Welding type volute

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