Studies of Transonic Aircraft Flows and Prediction of Initial Buffet Using Large-Eddy Simulation

被引:0
|
作者
Goc, Konrad A. [1 ]
Agrawal, Rahul [2 ]
Bose, Sanjeeb T. [3 ,4 ]
Moin, Parviz [2 ]
机构
[1] Boeing Co, Flight Sci, Seattle, WA 98124 USA
[2] Stanford Univ, Ctr Turbulence Res, Dept Mech Engn, Stanford, CA 94305 USA
[3] Cadence Design Syst, San Jose, CA 95134 USA
[4] Stanford Univ, Inst Computat & Math Engn, Stanford, CA 94305 USA
来源
关键词
Transonic Aircraft; Computational Fluid Dynamics; Laminar to Turbulent Transition; Aerodynamic Performance; Drag Coefficient; Common Research Model; Mean Aerodynamic Chord; NACA; 0012; Transonic Wind Tunnel; Reynolds Averaged Navier Stokes; DRAG PREDICTION; MODEL;
D O I
10.2514/1.C038129
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
This paper utilizes the large-eddy simulation (LES) paradigm with a physics-based turbulence modeling approach, including a dynamic subgrid-scale model and an equilibrium wall model, to examine the flow over the NASA transonic Common Research Model (CRM), a flow configuration that has been the focus of several AIAA Drag Prediction Workshops (DPWs). The current work explores sensitivities to laminar-to-turbulent transition, wind tunnel mounting system, grid resolution, and grid topology and makes suggestions for current best practices in the context of LESs of transonic aircraft flows. It is found that promoting the flow transition to turbulence via an array of cylindrical trip dots, including the sting mounting system, and leveraging stranded boundary-layer grids all tend to improve the quality of the LES solutions. Non-monotonic grid convergence in the LES calculations is observed to be strongly sensitive to grid topology, with stranded meshes rectifying this issue relative to their hexagonal close-packed counterparts. The details of the boundary-layer profiles, both at the leading edge of the wing and within the shock-induced separation bubble, are studied, with thicknesses and integral measures reported, providing details about the boundary-layer characteristics to turbulence modelers not typically available from complex aircraft flows. Finally, an assessment of the initial buffet prediction capabilities of LES is made in the context of a simpler NACA 0012 flow, with computational predictions showing reasonable agreement with available experimental data for the angle of attack at initial buffet onset and shock oscillation frequency associated with sustained buffet.
引用
收藏
页数:21
相关论文
共 50 条
  • [21] Large-eddy simulation of turbulent reacting flows
    Pitsch, Heinz
    Desjardins, Olivier
    Balarac, Guillaume
    Ihme, Matthias
    PROGRESS IN AEROSPACE SCIENCES, 2008, 44 (06) : 466 - 478
  • [22] Zonal-Detached Eddy Simulation of transonic buffet on a civil aircraft type configuration
    Brunet, V.
    Deck, S.
    ADVANCES IN HYBRID RANS-LES MODELLING, 2008, : 182 - 191
  • [23] Large-eddy simulation of in-cylinder flows
    Haworth, DC
    OIL & GAS SCIENCE AND TECHNOLOGY-REVUE D IFP ENERGIES NOUVELLES, 1999, 54 (02): : 175 - 185
  • [24] LARGE-EDDY SIMULATION OF TURBULENT ANISOCHORIC FLOWS
    FUREBY, C
    AIAA JOURNAL, 1995, 33 (07) : 1263 - 1272
  • [25] Large-eddy simulation of transonic turbulent flow over a bump
    Sandham, ND
    Yao, YF
    Lawal, AA
    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW, 2003, 24 (04) : 584 - 595
  • [26] Noise prediction of a rectangular jet using large-eddy simulation
    Rembold, B
    Kleiser, L
    AIAA JOURNAL, 2004, 42 (09) : 1823 - 1831
  • [27] Immersed Boundaries in Large-Eddy Simulation of a transonic cavity flow
    Merlin, C.
    Domingo, P.
    Vervisch, L.
    DIRECT AND LARGE-EDDY SIMULATION VIII, 2011, 15 : 119 - +
  • [28] Large-eddy simulation of compressible flows using a spectral multidomain method
    Sengupta, K.
    Jacobs, G. B.
    Mashayek, F.
    INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN FLUIDS, 2009, 61 (03) : 311 - 340
  • [29] Prediction of Lagrangian dispersion of fluid particles in isotropic turbulent flows using large-eddy simulation method
    Zhou, Zhideng
    Chen, Jincai
    Jin, Guodong
    ACTA MECHANICA, 2017, 228 (09) : 3203 - 3222
  • [30] Prediction of Lagrangian dispersion of fluid particles in isotropic turbulent flows using large-eddy simulation method
    Zhideng Zhou
    Jincai Chen
    Guodong Jin
    Acta Mechanica, 2017, 228 : 3203 - 3222