A simple steady-state inflow model of the neutral and stable atmospheric boundary layer applied to wind turbine wake simulations

被引:0
|
作者
van der Laan, Maarten Paul [1 ]
Kelly, Mark [1 ]
Baungaard, Mads [1 ]
Dicholkar, Antariksh [1 ]
Hodgson, Emily Louise [1 ]
机构
[1] DTU Wind and Energy Systems, Technical University of Denmark, Risø Campus, Frederiksborgvej 399, Roskilde,4000, Denmark
关键词
Atmospheric boundary layer - Boundary layer flow - Buoyancy - Large eddy simulation - Navier Stokes equations - Reynolds number - Steady flow - Turbulence - Vortex flow;
D O I
10.5194/wes-9-1985-2024
中图分类号
学科分类号
摘要
Wind turbines are increasing in size and operate more frequently above the atmospheric surface layer, which requires improved inflow models for numerical simulations of turbine interaction. In this work, a steady-state Reynolds-averaged Navier–Stokes (RANS) model of the neutral and stable atmospheric boundary layer (ABL) is introduced. The model incorporates buoyancy in the turbulence closure equations using a prescribed Brunt–Väisälä frequency, does not require a global turbulence length-scale limiter, and is only dependent on two non-dimensional numbers. Assuming a constant temperature gradient over the entire ABL, although a strong assumption, leads to a simple and well-behaved inflow model. RANS wake simulations are performed for shallow and tall ABLs, and the results show good agreement with large-eddy simulations in terms of velocity deficit from a single wind turbine. However, the proposed RANS model underpredicts the magnitude of the velocity deficit of a wind turbine row for the shallow ABL case. In addition, RANS ABL models can suffer from numerical problems when they are applied as a shallow-ABL inflow model to large wind farms due to the low-eddy-viscosity layer above the ABL. The proposed RANS model inherits this issue, and further research is required to solve it. © Author(s) 2024.
引用
收藏
页码:1985 / 2000
相关论文
共 50 条
  • [21] New inflow boundary conditions for modelling the neutral equilibrium atmospheric boundary layer in computational wind engineering
    Yang, Yi
    Gu, Ming
    Chen, Suqin
    Jin, Xinyang
    JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2009, 97 (02) : 88 - 95
  • [22] An improved k-ε model applied to a wind turbine wake in atmospheric turbulence
    van der Laan, M. Paul
    Sorensen, Niels N.
    Rethore, Pierre-Elouan
    Mann, Jakob
    Kelly, Mark C.
    Troldborg, Niels
    Schepers, J. Gerard
    Machefaux, Ewan
    WIND ENERGY, 2015, 18 (05) : 889 - 907
  • [23] A steady-state based model applied to small wind turbines
    Farias, Gustavo M.
    Galhardo, Marcos A. B.
    Vaz, Jerson R. P.
    Pinho, Joao T.
    JOURNAL OF THE BRAZILIAN SOCIETY OF MECHANICAL SCIENCES AND ENGINEERING, 2019, 41 (05) : 1 - 10
  • [24] Response of the wind-turbine wake to a turbulent atmospheric boundary-layer flow
    Englberger, Antonia, 1600, Deutschen Forschungsanstalt fur Luft-und Raumfahrt (2017-January):
  • [25] A steady-state based model applied to small wind turbines
    Gustavo M. Farias
    Marcos A. B. Galhardo
    Jerson R. P. Vaz
    João T. Pinho
    Journal of the Brazilian Society of Mechanical Sciences and Engineering, 2019, 41
  • [26] Modeling of the atmospheric boundary layer under stability stratification for wind turbine wake production
    Ichenial, Mohamed Marouan
    El-Hajjaji, Abdellah
    Khamlichi, Abdellatif
    WIND ENGINEERING, 2021, 45 (02) : 178 - 204
  • [27] Wind-Tunnel Simulation of the Wake of a Large Wind Turbine in a Stable Boundary Layer: Part 2, the Wake Flow
    Philip E. Hancock
    Frauke Pascheke
    Boundary-Layer Meteorology, 2014, 151 : 23 - 37
  • [28] Wind-Tunnel Simulation of the Wake of a Large Wind Turbine in a Stable Boundary Layer: Part 2, the Wake Flow
    Hancock, Philip E.
    Pascheke, Frauke
    BOUNDARY-LAYER METEOROLOGY, 2014, 151 (01) : 23 - 37
  • [29] Simple Solutions to Steady-State Cumulus Regimes in the Convective Boundary Layer
    Schalkwijk, Jerome
    Jonker, Harmen J. J.
    Siebesma, A. Pier
    JOURNAL OF THE ATMOSPHERIC SCIENCES, 2013, 70 (11) : 3656 - 3672
  • [30] Wind Tunnel Simulation of Wind Turbine Wakes in Neutral, Stable and Unstable Offshore Atmospheric Boundary Layers
    Hancock, Philip E.
    Pascheke, Frauke
    Zhang, Shanying
    WIND ENERGY - IMPACT OF TURBULENCE, 2014, 2 : 109 - 114