Suitability of the k-ω turbulence model for scramjet flowfield simulations

被引:30
|
作者
Chan, W. Y. K. [1 ]
Jacobs, P. A. [2 ]
Mee, D. J. [1 ]
机构
[1] Univ Queensland, Sch Mech & Min Engn, Ctr Hyperson, Brisbane, Qld 4072, Australia
[2] Univ Queensland, Sch Mech & Min Engn, Queensland Geothermal Energy Ctr Excellence, Brisbane, Qld 4072, Australia
基金
澳大利亚研究理事会;
关键词
k-? turbulence model; hypersonic; supersonic; scramjet; CFD validation; SKIN-FRICTION; FLOWS; VALIDATION;
D O I
10.1002/fld.2699
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
The suitability of Wilcox's 2006 k ? turbulence model for scramjet flowfield simulations is demonstrated by validation against five test cases that have flowfields representative of those to be expected in scramjets. The five test cases include a 2D flat plate, an axisymmetric cylinder, a backward-facing step, the mixing of a pair of coaxial jets and the interaction between a shock wave and turbulent boundary layer. A generally good agreement between the numerical and experimental results is obtained for all test cases. These tests reveal that despite the turbulence model's sensitivity to freestream turbulence properties, the numerically predicted skin friction agrees with experimental data and theoretical correlations to their degree of uncertainty. The tests also confirm the importance of using a y+ value of less than 1 in getting accurate surface heat transfer distributions. In the coaxial jets case, the importance of matching the turbulence intensities at the inflow plane in improving the predictions of the turbulent mixing phenomena is also shown. A review of guidelines with regard to the setting up of grids and specification of freestream turbulence properties for turbulent Reynolds-averaged NavierStokes CFD simulations is also included in this paper. Copyright (C) 2011 John Wiley & Sons, Ltd.
引用
收藏
页码:493 / 514
页数:22
相关论文
共 50 条
  • [41] Non-linear correction for the k-ω SST turbulence model
    Matyushenko, A. A.
    Garbaruk, A. V.
    INTERNATIONAL CONFERENCE PHYSICA.SPB/2016, 2017, 929
  • [42] Modification of k-ω Turbulence Model for Predicting Airfoil Aerodynamic Performance
    PENG Bo
    YAN Hao
    FANG Hong
    WANG Ming
    Journal of Thermal Science, 2015, 24 (03) : 221 - 228
  • [43] Variations on a k-ε turbulence model for supersonic boundary layer computations
    Guézengar, D
    Francescatto, J
    Guillard, H
    Dussauge, JP
    EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 1999, 18 (04) : 713 - 738
  • [44] Anisotropic k-ϵ Model Based on General Principles of Statistical Turbulence
    Brouwers, J. J. H.
    INVENTIONS, 2024, 9 (05)
  • [45] Modification of k-ω Turbulence Model for Predicting Airfoil Aerodynamic Performance
    Peng Bo
    Yan Hao
    Fang Hong
    Wang Ming
    JOURNAL OF THERMAL SCIENCE, 2015, 24 (03) : 221 - 228
  • [46] Instability of the realizable k-ε turbulence model beneath surface waves
    Fuhrman, David R.
    Li, Yuzhu
    PHYSICS OF FLUIDS, 2020, 32 (11)
  • [47] Computation of transonic diffuser flows by a lagged k-ω turbulence model
    Xiao, Q
    Tsai, HM
    Liu, F
    JOURNAL OF PROPULSION AND POWER, 2003, 19 (03) : 473 - 483
  • [48] A nonlinear k-ε-kp two-phase turbulence model
    Zhou, LX
    Gu, HX
    JOURNAL OF FLUIDS ENGINEERING-TRANSACTIONS OF THE ASME, 2003, 125 (01): : 191 - 194
  • [49] Modification of k-ω turbulence model for predicting airfoil aerodynamic performance
    Bo Peng
    Hao Yan
    Hong Fang
    Ming Wang
    Journal of Thermal Science, 2015, 24 : 221 - 228
  • [50] On a generalized nonlinear K-ε model and the use of extended thermodynamics in turbulence
    Speziale, CG
    THEORETICAL AND COMPUTATIONAL FLUID DYNAMICS, 1999, 13 (03) : 161 - 166