On restraining the production of small scales of motion in a turbulent channel flow

被引:48
|
作者
Verstappen, Roel [1 ]
机构
[1] Univ Groningen, Inst Math & Comput Sci, NL-9700 AV Groningen, Netherlands
关键词
D O I
10.1016/j.compfluid.2007.01.013
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Since most turbulent flows cannot be computed directly from the incompressible Navier-Stokes equations, a dynamically less complex mathematical formulation is sought. In the quest for such a formulation, we consider nonlinear approximations of the convective term that preserve the symmetry and conservation properties. In particularly, the energy, enstrophy (in 2D) and helicity are conserved. The underlying idea is to restrain the convective production of small scales in an unconditional stable manner, meaning that the approximate solution cannot blow up in the energy-norm (in 2D also: enstrophy-norm). The numerical algorithm used to solve the governing equations preserves the symmetry and conservation properties too. The resulting simulation method is successfully tested for a turbulent channel flow (Re-tau = 180 and 395). (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:887 / 897
页数:11
相关论文
共 50 条
  • [1] Distribution of motion scales of vortices in turbulent open channel flow
    Zhang, Peng
    Yang, Shengfa
    Hu, Jiang
    Chen, Yang
    Xing, Yun
    [J]. Shuikexue Jinzhan/Advances in Water Science, 2015, 26 (01): : 91 - 98
  • [2] Length Scales in Turbulent Channel Flow
    Morishita, Koji
    Ishihara, Takashi
    Kaneda, Yukio
    [J]. JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN, 2019, 88 (06)
  • [3] TIME SCALES IN TURBULENT CHANNEL FLOW
    ALFREDSSON, PH
    JOHANSSON, AV
    [J]. PHYSICS OF FLUIDS, 1984, 27 (08) : 1974 - 1981
  • [4] On the universality of local dissipation scales in turbulent channel flow
    Bailey, S. C. C.
    Witte, B. M.
    [J]. JOURNAL OF FLUID MECHANICS, 2016, 786 : 234 - 252
  • [5] Self-Sustained Process at Large Scales in Turbulent Channel Flow
    Hwang, Yongyun
    Cossu, Carlo
    [J]. PHYSICAL REVIEW LETTERS, 2010, 105 (04)
  • [6] The smallest temperature scales in a turbulent channel flow at high Prandtl numbers
    Bergant, R.
    Tiselj, I.
    [J]. HT2005: PROCEEDINGS OF THE ASME SUMMER HEAT TRANSFER CONFERENCE 2005, VOL 3, 2005, : 489 - 498
  • [7] Small scale intermittency and bursting in a turbulent channel flow
    Onorato, Miguel
    Camussi, Roberto
    Iuso, Gaetano
    [J]. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 2000, 61 (02): : 1447 - 1454
  • [8] Small scale intermittency and bursting in a turbulent channel flow
    Onorato, M
    Camussi, R
    Iuso, G
    [J]. PHYSICAL REVIEW E, 2000, 61 (02): : 1447 - 1454
  • [9] CALCULATING SOME DETAILS OF TURBULENT MOTION IN PLANE CHANNEL FLOW
    SCHINDLER, G
    [J]. ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 1994, 74 (11): : 545 - 555
  • [10] Distribution and motion of particles in the turbulent boundary layer of channel flow
    20151600746147
    [J]. Ji, Chunning (cnji@tju.edu.cn), 2015, Chinese Society of Theoretical and Applied Mechanics (47):