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重气体介质中超临界翼型跨声速流动特性

查俊 曾开春 寇西平 杨兴华 张汇卓

查俊, 曾开春, 寇西平, 杨兴华, 张汇卓. 重气体介质中超临界翼型跨声速流动特性[J]. 航空动力学报, 2021, 36(9): 1894-1905. doi: 10.13224/j.cnki.jasp.20200490
引用本文: 查俊, 曾开春, 寇西平, 杨兴华, 张汇卓. 重气体介质中超临界翼型跨声速流动特性[J]. 航空动力学报, 2021, 36(9): 1894-1905. doi: 10.13224/j.cnki.jasp.20200490
ZHA Jun, ZENG Kaichun, KOU Xiping, YANG Xinghua, ZHANG Huizhuo. Transonic flow characteristics of supercritical airfoil in heavy gas medium[J]. Journal of Aerospace Power, 2021, 36(9): 1894-1905. doi: 10.13224/j.cnki.jasp.20200490
Citation: ZHA Jun, ZENG Kaichun, KOU Xiping, YANG Xinghua, ZHANG Huizhuo. Transonic flow characteristics of supercritical airfoil in heavy gas medium[J]. Journal of Aerospace Power, 2021, 36(9): 1894-1905. doi: 10.13224/j.cnki.jasp.20200490

重气体介质中超临界翼型跨声速流动特性

doi: 10.13224/j.cnki.jasp.20200490
详细信息
    作者简介:

    查俊(1984-),男,工程师,硕士,主要从事飞行器气动弹性力学研究。

    通讯作者:

    寇西平(1987-),男,工程师,博士,主要从事飞行器气动弹性力学研究。E-mail:kouxiping@cardc.cc

  • 中图分类号: V211.3

Transonic flow characteristics of supercritical airfoil in heavy gas medium

  • 摘要: 采用Peng-Robinson非理想气体状态方程模拟重气体介质的热力学特性,并与雷诺平均Navier-Stokes方程结合,形成封闭的重气体介质流动模型。针对超临界翼型流动问题,利用LU-SGS(lower-upper symmetric Gauss-Seidel)隐式时间推进格式和有限体积法,分别求解空气介质和重气体介质下的流动特性。数值模拟结果表明:在跨声速条件下重气体介质中超临界翼型的升阻力增大、超声速区域表面负压增加、边界层位移厚度减小、激波后移、表面摩擦阻力明显增大、后缘流动分离推迟。该研究为后续重气体介质中飞行器颤振特性研究及修正方法的发展提供了基础支持。

     

  • [1] 杨超,黄超,吴志刚,等.气动伺服弹性研究的进展与挑战[J].航空学报,2015,36(4):1011-1033.
    [2] 杨兴华,寇西平,余立,等.重气体介质在气动弹性风洞试验中的作用[R].呼和浩特:第十六届全国空气弹性学术交流会,2019.
    [3] 罗务揆,谭申刚,谢怀强,等.确定颤振模型设计参数的 方法研究[J].航空学报,2013,34(10):2383-2390.
    [4] 钱卫,张桂江,刘钟坤.飞机全动平尾颤振特性风洞试验研究[J].航空学报,2015,36(4):1093-1102.
    [5] COLE S R,GARCIA J L.Past,present and future capabilities of the Langley Transonic Dynamics Tunnel from an aeroelasticity perspective[R].AIAA-2000-1767,2000.
    [6] DOENHOFF A E VON,BRASLOW A L,SCHWARTZBERG M A.Studies of the use of Freon-12 as a wind-tunnel testing medium[R].NACA TN-3000,1953.
    [7] POZNIAK O M.Investigation in to the use of Freon-12 as a working medium in a high-speed wind-tunnel[R].Cranfield:Cranfield College of Aeronautics,Note No.72,1957.
    [8] CORLISS J M,COLE S R.Heavy gas conversion of the NASA Langley Transonic Dynamics Tunnel[R].AIAA-1998-2710,1998.
    [9] COLE S R,RIVERA J A.The new heavy gas testing capability in the NASA Langley Transonic Dynamics Tunnel[R].Cambridge,US:Royal Aeronautical Society Forum Paper No.4,1997.
    [10] YEAGER W T,KVATERNIK R G.Contributions of the Langley Transonic Dynamics Tunnel to rotorcraft technology and development[R].AIAA-2000-1771,2000.
    [11] COLE S R,KELLER D F,PIATAK D J.Contributions of the Transonic Dynamics Tunnel to launch vehicle and spacecraft development[R].AIAA-2000-1772,2000.
    [12] PERRY B,NOLL T,SCOTT R.Contributions of the transonic dynamics tunnel to the testing of active control of aeroelastic response[R].AIAA-2000-1769,2000.
    [13] RUDNIK R,GERMAIN E.Reynolds number scaling effects on the European high-lift project configurations[J].Journal of Aircraft,2009,46(4):1140-1152.
    [14] PETTERSSON K,RIZZI A.Aerodynamic scaling to free flight conditions:past and present[J].Progress in Aerospace Sciences,2008,44(2):295-313.
    [15] 魏志,陶洋,王洪彪.超临界翼型跨声速激波振荡数值模拟[J].航空动力学报,2011,26(7):1615-1620.
    [16] ANDERSON W K.A numerical study on the use of sulfur hexafluoride as a test gas for wind tunnels[R].AIAA-1990-1421,1990.
    [17] BONHAUS D L,ANDERSON W L,MAVRIPLIS D J.Numerical study to assess sulfur hexafluoride as a medium for testing multielement airfoils[R].NASA TP-3496,1995.
    [18] ANDERS J B,ANDERSON W K,MURTH A V.The use of heavy gas for increased Reynolds numbers in transonic wind tunnels[R].AIAA-1998-2882,1998.
    [19] POLING B E,PRAUSNITZ J M,O’CONNELL J P.The properties of gases and liquids[M].New York:McGRAW-Hill,2000.
    [20] MCBRIDE B J,HEIMEL S,EHLERS J G,et al.Thermodynamic properties to 6 000 K for 210 substances involving the first 18 elements[R].NASA SP-3001,1963.
    [21] BLAZEK J.Computational fluid dynamics:principles and applications[M].London:Elsevier,2001:8-18.
    [22] GOLDBERG U,PEROOMIAN O,CHAKRAVARTHY S.A wall-distance-free k-ε model with enhanced near-wall treatment[J].Journal of Fluids Engineering,1998,120(3):457-462.
    [23] LI Huaguang,ZONG Nan,LU Xiyun,et al.A consistent characteristic boundary condition for general fluid mixture and its implementation in a preconditioning scheme[J].Advances in Applied Mathematics and Mechanics,2012,4(1):72-92.
    [24] ANDERS J B,ANDERSON W K,MURTHY A V.Transonic similarity theory applied to a supercritical airfoil in heavy gas[J].Journal of Aircraft,1999,36(6):957-964.
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出版历程
  • 收稿日期:  2020-11-17
  • 刊出日期:  2021-09-28

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