Computational modeling of the neutrally stratified atmospheric boundary layer flow using the standard k-ε turbulence model

被引:30
|
作者
Juretic, Franjo [1 ]
Kozmar, Hrvoje [1 ]
机构
[1] Univ Zagreb, Fac Mech Engn & Naval Architecture, Zagreb 10000, Croatia
关键词
Neutrally stratified atmospheric boundary layer flow; Atmospheric turbulence; Reynolds stress; Computational modeling; Steady RANS; Standard k-epsilon turbulence model; WIND-TUNNEL; SIMULATIONS; DISPERSION;
D O I
10.1016/j.jweia.2013.01.011
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
A novel approach, which focuses on the Reynolds stress in computational simulations of the atmospheric boundary layer (ABL) flow in an empty domain using the k-epsilon turbulence model, is presented. A numerical setup mimics the experiments carried out in the boundary layer wind tunnel for the rural, suburban, and urban terrain exposure. The method accounts for a decrease in turbulence parameters with height, as observed in full scale. In addition, the paper presents analysis which shows that the k-epsilon turbulence model is capable of modeling decreasing turbulence parameters with height and achieves satisfactory accuracy. It is supported with computational results which agree well with the experimental results. In particular, the difference between the calculated and measured mean velocity, turbulent kinetic energy and Reynolds stress profiles remains within +/- 10% in most parts of the computational domain. (c) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:112 / 120
页数:9
相关论文
共 50 条
  • [1] An explicit algebraic model of the planetary boundary layer turbulence: test computation of the neutrally stratified atmospheric boundary layer
    A. F. Kurbatskii
    L. I. Kurbatskaya
    [J]. Thermophysics and Aeromechanics, 2017, 24 : 705 - 717
  • [2] An explicit algebraic model of the planetary boundary layer turbulence: test computation of the neutrally stratified atmospheric boundary layer
    Kurbatskii, A. F.
    Kurbatskaya, L. I.
    [J]. THERMOPHYSICS AND AEROMECHANICS, 2017, 24 (05) : 705 - 717
  • [3] Numerical simulation of the neutral equilibrium atmospheric boundary layer using the SST k-ω turbulence model
    Hu, Peng
    Li, Yongle
    Cai, C. S.
    Liao, Haili
    Xu, G. J.
    [J]. WIND AND STRUCTURES, 2013, 17 (01) : 87 - 105
  • [4] An improved k-ω turbulence model for the simulations of the wind turbine wakes in a neutral atmospheric boundary layer flow
    Bouras, Ioannis
    Ma, Lin
    Ingham, Derek
    Pourkashanian, Mohamed
    [J]. JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2018, 179 : 358 - 368
  • [5] A k-ε turbulence closure model for the atmospheric boundary layer including urban canopy
    Ca, VT
    Ashie, Y
    Asaeda, T
    [J]. BOUNDARY-LAYER METEOROLOGY, 2002, 102 (03) : 459 - 490
  • [6] Computational Fluid Dynamics model of stratified atmospheric boundary-layer flow
    Koblitz, T.
    Bechmann, A.
    Sogachev, A.
    Sorensen, N.
    Rethore, P. E.
    [J]. WIND ENERGY, 2015, 18 (01) : 75 - 89
  • [7] A k-*epsiv Turbulence Closure Model For The Atmospheric Boundary Layer Including Urban Canopy
    Vu Thanh Ca
    Yasunobu Ashie
    Takashi Asaeda
    [J]. Boundary-Layer Meteorology, 2002, 102 : 459 - 490
  • [8] A modified k-ω turbulence model for improved predictions of neutral atmospheric boundary layer flows
    Saleh, A.
    Lakkis, I.
    Moukalled, F.
    [J]. BUILDING AND ENVIRONMENT, 2022, 223
  • [9] A comparative study on the simulation of neutral atmospheric boundary layer based on the k-Εturbulence model
    [J]. Yang, Yi (ctyangyi@scut.edu.cn), 2018, Tsinghua University (35):
  • [10] Variations on a k-ε turbulence model for supersonic boundary layer computations
    Guézengar, D
    Francescatto, J
    Guillard, H
    Dussauge, JP
    [J]. EUROPEAN JOURNAL OF MECHANICS B-FLUIDS, 1999, 18 (04) : 713 - 738