Environmental ScienceEngineeringPhysics

M. Churchfield, Sang Lee, J. Michalakes, P. Moriarty

2012.5.2JOURNAL OF TURBULENCE

DOI: 10.1080/14685248.2012.668191

Abstract

Although the atmospheric sciences community has been studying the effects of atmospheric stability and surface roughness on the planetary boundary layer for some time, their effects on wind turbine dynamics have not been well studied. In this study, we performed numerical experiments to explore some of the effects of atmospheric stability and surface roughness on wind turbine dynamics. We used large-eddy simulation to create atmospheric winds and compute the wind turbine flows, and we modeled the wind turbines as revolving and flexible actuator lines coupled to a wind turbine structural and system dynamic model. We examined the structural moments about the wind turbine blade, low-speed shaft, and nacelle; power production; and wake evolution when large 5-MW turbines are subjected to winds generated from low- and high-surface roughness levels representative of offshore and onshore conditions, respectively, and also neutral and unstable atmospheric conditions. In addition, we placed a second turbine 7 rotor...

Citation format

CHURCHFIELD, M., et al. A numerical study of the effects of atmospheric and wake turbulence on wind turbine dynamics. JOURNAL OF TURBULENCE, 2012, 13: 14.