Numerical Investigations on Wind Flow over Complex Terrain

被引:11
|
作者
Ramechecandane, S. [1 ]
Gravdahl, Arne [2 ]
机构
[1] Hydro Aluminium AS, Porsgrunn, Norway
[2] CEO WindSim AS, Tonsberg, Norway
关键词
Computational Fluid Dynamics; turbulence models; atmospheric boundary layer flows; wall functions; roughness length;
D O I
10.1260/0309-524X.36.3.273
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
A comparison of three two-equation turbulence models namely the standard k-epsilon model, Renormalized Group Theory (RNG) k-epsilon model and the k-omega model of Wilcox for flow over three different types of topographies have been presented in this paper. The present work is also an attempt to propose best practices for simulating atmospheric boundary layer ( ABL) flows over complex terrain. Numerical investigations are performed for three different topographies: (i) cosine Hill (ii) Bolund Hill and (iii) Askervein Hill. The commercial CFD solver PHOENICS and the wind farm design tool WindSim V-5.1.0 are used for solving the Reynolds Averaged Navier Stokes (RANS) equations with the turbulence closure. The profiles of velocity and turbulent kinetic energy obtained using the various turbulence models are compared with available experimental data. The numerical results clearly show the superiority of the k-omega model of Wilcox over the standard k-epsilon model and the RNG k-epsilon model for ABL flows. Though the velocity profiles obtained using all three models are alike there exists a significant variation in the turbulent kinetic energy profiles for the cases considered in this investigation. The models perform very well when the terrain orography is quite complex, except for the predictions on the leeward side of the Hill where the elliptic effects are more pronounced.
引用
收藏
页码:273 / 295
页数:23
相关论文
共 50 条
  • [31] A hybrid numerical simulation method for typhoon wind field over complex terrain
    Huang, Wenfeng
    Zhou, Huanlin
    WIND AND STRUCTURES, 2014, 18 (05) : 549 - 566
  • [32] Experimental and Numerical Modelling of Flow over Complex Terrain: The Bolund Hill
    Conan, Boris
    Chaudhari, Ashvinkumar
    Aubrun, Sandrine
    van Beeck, Jeroen
    Hamalainen, Jari
    Hellsten, Antti
    BOUNDARY-LAYER METEOROLOGY, 2016, 158 (02) : 183 - 208
  • [33] Experimental and Numerical Modelling of Flow over Complex Terrain: The Bolund Hill
    Boris Conan
    Ashvinkumar Chaudhari
    Sandrine Aubrun
    Jeroen van Beeck
    Jari Hämäläinen
    Antti Hellsten
    Boundary-Layer Meteorology, 2016, 158 : 183 - 208
  • [34] Fundamental aspects of fluid flow over complex terrain for wind energy applications
    Puga, Jose Fernandez
    Fallen, Manfred
    Ebert, Fritz
    WIND ENERGY, 2007, : 33 - +
  • [35] Coupled WRF-OpenFOAM study of wind flow over complex terrain
    Temel, Orkun
    Bricteux, Laurent
    van Beeck, Jeroen
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2018, 174 : 152 - 169
  • [36] SOME WIND CHARACTERISTICS OVER COMPLEX TERRAIN
    PANOFSKY, HA
    LEYI, Z
    JOURNAL OF THE METEOROLOGICAL SOCIETY OF JAPAN, 1982, 60 (01) : 432 - 438
  • [37] Scintillometer wind measurements over complex terrain
    Poggio, LP
    Furger, M
    Prévôt, ASH
    Graber, WK
    Andreas, EL
    JOURNAL OF ATMOSPHERIC AND OCEANIC TECHNOLOGY, 2000, 17 (01) : 17 - 26
  • [38] CHARACTERISTICS OF WIND PROFILES OVER COMPLEX TERRAIN
    PANOFSKY, HA
    MING, Z
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 1983, 15 (1-3) : 177 - 183
  • [39] A WIND-TUNNEL BOUNDARY-LAYER SIMULATION OF WIND FLOW OVER COMPLEX TERRAIN - EFFECT OF TERRAIN AND MODEL CONSTRUCTION
    NEAL, D
    STEVENSON, DC
    LINDLEY, D
    BOUNDARY-LAYER METEOROLOGY, 1981, 21 (03) : 271 - 293
  • [40] Numerical Simulation of Wind Field over Complex Terrain and Its Application in Jiuzhaihuanglong Airport
    Tang, Chu
    Wang, Libo
    2014 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON AEROSPACE TECHNOLOGY, APISAT2014, 2015, 99 : 891 - 897