풍력 블레이드의 결빙에 의한 공력 영향성 전산 예측

COMPUTATIONAL PREDICTION OF ICING EFFECTS ON AERODYNAMIC CHARACTERISTICS OF A WIND TURBINE BLADE

초록

A significant change in aerodynamic characteristics of wind turbine blade can occur by ice formed on the surface of the blade operated in cold climate. The ice accretion can result in performance loss, overloading due to delayed stall, and excessive vibration associated with mass imbalance. In this study, the impact of ice accretion on the aerodynamic characteristics of NREL 5MW wind turbine blade sections is examined by a CFD-based method. It is shown that the thickness of ice accretion increases from the root to the tip and the effects of icing conditions such as relative wind velocity play a significant role in the shape of ice accretion. In addition, the computational results are used to assess the degradation in the lift and drag coefficients of the blade sections.

키워드

풍력블레이드(Wind Turbine Blade)전산유체역학(CFD)공력특성(Aerodynamic Characteristics)결빙증식(Ice Accretion)
제목
풍력 블레이드의 결빙에 의한 공력 영향성 전산 예측
제목 (타언어)
COMPUTATIONAL PREDICTION OF ICING EFFECTS ON AERODYNAMIC CHARACTERISTICS OF A WIND TURBINE BLADE
저자
박지호정기영명노신
발행일
2013
저널명
한국전산유체공학회지
18
3
페이지
51 ~ 59