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Atmospheric Turbulence Effects on Wind-Turbine Wakes: An LES Study

Energies · 2012 · Vol. 5(12) · pp. 5340–5362
Yu‐Ting WuFernando Porté‐Agel

Abstract

A numerical study of atmospheric turbulence effects on wind-turbine wakes is presented. Large-eddy simulations of neutrally-stratified atmospheric boundary layer flows through stand-alone wind turbines were performed over homogeneous flat surfaces with four different aerodynamic roughness lengths. Emphasis is placed on the structure and characteristics of turbine wakes in the cases where the incident flows to the turbine have the same mean velocity at the hub height but different mean wind shears and turbulence intensity levels. The simulation results show that the different turbulence intensity levels of the incoming flow lead to considerable influence on the spatial distribution of the mean velocity deficit, turbulence intensity, and turbulent shear stress in the wake region. In particular, when the turbulence intensity level of the incoming flow is higher, the turbine-induced wake (velocity deficit) recovers faster, and the locations of the maximum turbulence intensity and turbulent stress are closer to the turbine. A detailed analysis of the turbulence kinetic energy budget in the wakes reveals also an important effect of the incoming flow turbulence level on the magnitude and spatial distribution of the shear production and transport terms.

Wind Energy Research and DevelopmentWind and Air Flow StudiesFluid Dynamics and Vibration AnalysisTurbulence kinetic energyTurbulenceWakeK-epsilon turbulence modelMechanicsPlanetary boundary layerTurbineMeteorologyAerodynamicsWind shear

Funding

  • National Science Foundation
  • Schweizerischer Nationalfonds zur Förderung der Wissenschaftlichen Forschung
  • Centro Svizzero di Calcolo Scientifico
  • National Supercomputing Centre Singapore
Citations
367
FWCI
255.43
field-weighted impact
References
43
Percentile
100%
vs. same field & year
Citations per year
References
Actuator Line Simulation of Wake of Wind Turbine Operating in Turbulent Inflow
Journal of Physics Conference Series · 2007 · 200 citations
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