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跨声压气机缝式处理机匣非定常模拟研究

祝剑虹 朴英 周建兴 岂兴明

祝剑虹, 朴英, 周建兴, 岂兴明. 跨声压气机缝式处理机匣非定常模拟研究[J]. 航空动力学报, 2008, 23(5): 882-888.
引用本文: 祝剑虹, 朴英, 周建兴, 岂兴明. 跨声压气机缝式处理机匣非定常模拟研究[J]. 航空动力学报, 2008, 23(5): 882-888.
ZHU Jian-hong, PIAO Ying, Zhou Jian-xing, Qi Xing-ming. Unsteady numerical simulation on transonic compressor with screwed slots casing treatment[J]. Journal of Aerospace Power, 2008, 23(5): 882-888.
Citation: ZHU Jian-hong, PIAO Ying, Zhou Jian-xing, Qi Xing-ming. Unsteady numerical simulation on transonic compressor with screwed slots casing treatment[J]. Journal of Aerospace Power, 2008, 23(5): 882-888.

跨声压气机缝式处理机匣非定常模拟研究

Unsteady numerical simulation on transonic compressor with screwed slots casing treatment

  • 摘要: 在Rotor37单级跨声压气机上进行了斜缝、带气室斜缝和半圆斜缝处理机匣下的压气机全三维非定常数值模拟.结果表明,缝式处理机匣的扩稳与其对泄漏流的影响和利用压差进行泄漏涡抽吸密切相关,在足够导通能力下,所利用的压差越大,抽吸能力越强,扩稳效果越明显.气室可通过改善斜缝输运条件来提高压气机裕度,而叶片角向斜缝则能通过增大斜缝进出口压差来进一步提高抽吸能力,但同时也带来了压比和效率的损失.

     

  • [1] 卢新根,楚武利.轴流压气机机匣处理研究进展及评述[J].力学进展,2006,36(2):222-223.
    [2] 刘大响,叶培梁,胡俊,等.航空燃气涡轮发动机稳定性设计与评定技术[M].北京.;航空工业出版社,2004.
    [3] Baily E E.Effects of grooved casing treatment on the flow range capability of a single stage axial-flow compressor[R].NASA TM X-2459,1972.
    [4] Dunham J.CFD validation for propulsion system component[R].AGARD AR-355,1998.
    [5] Lenneth L.Experimental and computational investigation of the tip clearance flow in a transonic axial compressor rotor[R].NASA TM 106711,1989.
    [6] 王永明,胡骏,屠宝锋,等.带处理机匣的跨声速风扇非定常数值模拟[J].南京航空航天大学学报,2006,38(5):540-544.WANG Yongming,HU Jun,TU Baofeng,et al.Unsteady numerical simulation of transonic fan with casing treatment[J].Journal of Nanjing University of Aeronautics & Astronautics,2006,38(5):540-544.
    [7] 袁巍,周盛,陆亚钧.压气机间隙流与处理机匣作用的三维数值分析[J].北京航空航天大学学报,2004,30(9):886-887.YUAN Wei,ZHOU Sheng,LU Yajun.3D numerical analysis for the effect between tip clearance and casing treatment in turbomachinery[J].Journal of Beijing University of Aeronautics & Astronautics,2004,30(9):886-887.
    [8] Furukawa M,Inoue M,Saiki K,et al.The role of tip leakage vortex breakdown in compressor rotor aerodynamics[R].ASME Paper 98-GT-239.
    [9] Hofman W,Ballmann J.Tip clearance vortex development and shock-vortex-interaction in a transonic axial compressot rotor[R].AIAA Paper 2002-0083.
    [10] Wike L,Kau H P.A numerical investigation of the influence of casing treatments on the tip leakage flow in a HPC front stage[R].ASME 002-GT-30642,2002.
    [11] Wilke I,Kau H P.A numerical investigation of the flow mechanisms in a high pressure compressor front stage with axial slots[J].ASME J.Turbomach,2004,126:339-349.
    [12] 卢新根,楚武利,张燕峰,等.跨音速压气机间隙流与处理机匣相互作用分析[J].西安交通大学学报,2006,40(11):1357-1360.LU Xinggen,CHU Wuli,ZHANG Yanfeng,et al.Numerical investigation of interaction between casing treatment and tip leakage flow in a transonic compressor rotor[J].Journal of Xi'an Jiaotong University,2006,40(11);1357-1360.
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出版历程
  • 收稿日期:  2007-05-23
  • 修回日期:  2007-08-06
  • 刊出日期:  2008-05-28

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