A Numerical Study of Atmospheric and Wake Turbulence Impacts on Wind Turbine Fatigue Loadings

Author:

Lee S.1,Churchfield M. J.,Moriarty P. J.,Jonkman J.,Michalakes J.2

Affiliation:

1. e-mail:

2. National Wind Technology Center, National Renewable Energy Laboratory, 15013 Denver West Parkway, MS 3811, Golden, CO 80401

Abstract

Large-eddy simulations of atmospheric boundary layers under various stability and surface roughness conditions are performed to investigate the turbulence impact on wind turbines. In particular, the aeroelastic responses of the turbines are studied to characterize the fatigue loading of the turbulence present in the boundary layer and in the wake of the turbines. Two utility-scale 5 MW turbines that are separated by seven rotor diameters are placed in a 3 km by 3 km by 1 km domain. They are subjected to atmospheric turbulent boundary layer flow and data are collected on the structural response of the turbine components. The surface roughness was found to increase the fatigue loads while the atmospheric instability had a small influence. Furthermore, the downstream turbines yielded higher fatigue loads indicating that the turbulent wakes generated from the upstream turbines have significant impact.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference31 articles.

1. Wind Turbine Wake Aerodynamics;Prog. Aerosp. Sci.,2003

2. Advances in Large-Eddy Simulation of a Wind Turbine Wake;J. Phys.: Conf. Ser.,2007

3. Results of Sexbierum Wind Farm Report,1992

4. Large-Eddy Simulation of Wind-Turbine Wakes: Evaluation of Turbine Parameterisations;Boundary-Layer Meteorol.,2011

5. Large Eddy Simulation Study of Fully Developed Wind-Turbine Array Boundary Layers;Phys. Fluids,2010

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