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Numerical Simulation of Aero Engine Active Clearance Control with Flanged Compressor Casing Structure

  • Shuhan Dong
  • , Jianchao Zhang*
  • , Xiang Luo
  • , Hanying Lu
  • *此作品的通讯作者
  • Aero Engine Academy of China

科研成果: 书/报告/会议事项章节会议稿件同行评审

摘要

Compared to the well-established high-pressure turbine active clearance control technology, research on active clearance control for compressors remains relatively insufficient. Therefore, this study proposed an impingement cooling pipeline design with a flanged casing structure for active clearance control (ACC) in the last stage of an aero engine compressor, and investigated the influence of flange structural parameters on cooling performance through numerical simulations. Using a fluid-thermal-structural coupling approach, the distribution of Nusselt number (Nu) on the outer casing surface and radial deformation of the inner casing surface were analyzed under different flange width-to-height ratios (b/h). The results demonstrate that increasing the flange width-to-height ratio enhances forced convective heat transfer on the outer casing surface. When the flange width is reduced, the casing contraction increases by 75%, but the increased thermal resistance simultaneously inhibits heat conduction efficiency within the casing, thereby affecting deformation response. The findings reveal the influence patterns of flange structural parameters on impingement cooling pipeline performance, providing valuable references for optimizing compressor active clearance control systems.

源语言英语
主期刊名2025 11th International Conference on Mechanical Engineering and Aerospace Engineering, MEAE 2025
出版商Institute of Electrical and Electronics Engineers Inc.
1-5
页数5
ISBN(电子版)9798331568405
DOI
出版状态已出版 - 2025
活动11th International Conference on Mechanical Engineering and Aerospace Engineering, MEAE 2025 - Beijing, 中国
期限: 17 10月 202519 10月 2025

出版系列

姓名2025 11th International Conference on Mechanical Engineering and Aerospace Engineering, MEAE 2025

会议

会议11th International Conference on Mechanical Engineering and Aerospace Engineering, MEAE 2025
国家/地区中国
Beijing
时期17/10/2519/10/25

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