留言板

尊敬的读者、作者、审稿人, 关于本刊的投稿、审稿、编辑和出版的任何问题, 您可以本页添加留言。我们将尽快给您答复。谢谢您的支持!

姓名
邮箱
手机号码
标题
留言内容
验证码

跨声速风扇叶片的静态气动弹性问题

郑赟 王彪 杨慧

郑赟, 王彪, 杨慧. 跨声速风扇叶片的静态气动弹性问题[J]. 航空动力学报, 2013, 28(11): 2475-2482.
引用本文: 郑赟, 王彪, 杨慧. 跨声速风扇叶片的静态气动弹性问题[J]. 航空动力学报, 2013, 28(11): 2475-2482.
ZHENG Yun, WANG Biao, YANG Hui. Static aeroelastic problems of transonic fan blades[J]. Journal of Aerospace Power, 2013, 28(11): 2475-2482.
Citation: ZHENG Yun, WANG Biao, YANG Hui. Static aeroelastic problems of transonic fan blades[J]. Journal of Aerospace Power, 2013, 28(11): 2475-2482.

跨声速风扇叶片的静态气动弹性问题

Static aeroelastic problems of transonic fan blades

  • 摘要: 使用时域的流固耦合数值计算方法,研究了跨声速风扇叶片在气动力和离心力共同作用下的静态气动弹性问题,分析了叶片在不同工况下的变形规律及叶片变形对整体气动性能的影响.NASA rotor 67的静态气动弹性计算说明气动力对叶片最大变形的贡献达13.07%, 而且叶片变形明显地改变了通道激波的位置和强度.宽弦空心跨声速风扇叶片的静态气动弹性计算说明叶片变形对总体气动效率的影响为0.15%~ 0.5%,其中气动力对变形贡献在叶片尖部的前缘可达41%,考虑气动力引起的变形使得该风扇的流量增大,气动特性线整体向右偏移.计算结果说明:气动力的非线性对跨声速风扇叶片静态变形问题有显著的影响,工程实践中从设计叶型到制造叶型的反扭过程应该采用流固耦合方法以得到更准确的叶型.

     

  • [1] 陈懋章.风扇/压气机技术发展和对今后工作的建议[J].航空动力学报,2002,17(1):1-5. CHEN Maozhang.Development of fan/compressor techniques and suggestions on further researches[J].Journal of Aerospace Power,2002,17(1):1-5.(in Chinese)
    [2] 陈懋章,刘宝杰.风扇/压气机气动设计技术发展趋势:用于大型客机的大涵道比涡扇发动机[J].航空动力学报,2008,23(6):961-975. CHEN Maozhang,LIU Baojie.Fan/compressor aero design trend and challenge on the development of high bypass ratio turbofan[J].Journal of Aerospace Power,2008,23(6):961-975.(in Chinese)
    [3] LIU Gaolian.A new generation of inverse shape design problem in aerodynamics and aerothermoelasticity:concepts,theory and methods[J].Aircraft Engineering and Aerospace Technology,2000,72(4):334-344.
    [4] Kallesoee B S,Hansen M H.Some effects of large blade deflections on aeroelastic stability.AIAA-2009-839,2009.
    [5] Pesatori E,Dossena V,D'Ippolito G.Stagger angle and pitch chord ratio effects on secondary flows downstream of a turbine cascade at several off-design conditions.ASME Paper GT-2004-54083,2004.
    [6] Wilson M J,Imregun M,Sayma A I.The effect of stagger variability in gas turbine fan assemblies[J].Journal of Turbomachinery,2007,129(2):404-411.
    [7] Mahajan A J,Stefko G L.An iterative multidisciplinary analysis for rotor blade shape determination.Monterey,US:AIAA/SAE/ASME/ASEE 29th Joint Propulsion Conference and Exhibit,1993.
    [8] Tatum K E,Giles G L.Integrating nonlinear aerodynamic and structural analysis for a complete fighter configuration[J].Journal of Aircraft,1988,25(12):1150-1156.
    [9] Guruswamy G P.Integrated approach for active coupling of structures and fluids[J].AIAA Journal,1989,27(6):788-793.
    [10] 郑赟,田晓,杨慧.跨声速风扇叶片变形对气动性能的影响[J].航空动力学报,2010,26(7):1621-1627. ZHENG Yun,TIAN Xiao,YANG Hui.Impact of blade deflection on aerodynamic performance of a transonic fan[J].Journal of Aerospace Power,2010,26(7):1621-1627.(in Chinese)
    [11] 郑赟.基于非结构网格的气动弹性数值方法研究[J].航空动力学报,2009,24(9):2069-2077. ZHENG Yun.Computational aeroelasticity with an unstructured grid method[J].Journal of Aerospace Power,2009,24(9):2069-2077.(in Chinese)
    [12] ZHENG Yun,YANG Hui.Coupled fluid-structure flutter analysis of a transonic fan[J].Chinese Journal of Aeronautics,2011,24(3):258-264.
    [13] 郑赟,王彪,王静,等.多块协调变形的网格变形技术及其应用[J].航空计算技术,2012,42(1):83-87. ZHENG Yun,WANG Biao,WANG Jing,et al.Mesh deforming technique based on compatibility of multi-block structured mesh deformation and its application to blade aeroelastic analysis in turbomachinery[J].Aeronautical Computing Technique,2012,42(1):83-87.(in Chinese)
    [14] Anthony J S,Jerry R W,Michael D H,et al.Laser anemometer measurements in a transonic axial-flow fan rotor.NASA Technical Paper 2879,1989.
    [15] 王彪,杨慧,郑赟.流固耦合数据交换的插值精度影响因素研究[J].航空计算技术,2012,42(4):85-89. WANG Biao,YANG Hui,ZHENG Yun.Research on data exchange at fluid-structure interface by interpolation[J].Aeronautical Computing Technique,2012,42(4):85-89.(in Chinese)
  • 加载中
计量
  • 文章访问数:  1928
  • HTML浏览量:  114
  • PDF量:  1066
  • 被引次数: 0
出版历程
  • 收稿日期:  2012-10-29
  • 刊出日期:  2013-11-28

目录

    /

    返回文章
    返回