Flutter performance of bend-twist coupled large-scale wind turbine blades

  • Hayat, Khazar
  • Gorostidi Martinez de Lecea, Alvaro
  • Donazar Moriones, Carlos
  • Ha, Sung Kyu
Citations

WEB OF SCIENCE

59
Citations

SCOPUS

84

초록

The bend-twist coupling (BTC) is proven to be effective in mitigating the fatigue loads for large-scale wind turbine blades, but at the same time it may cause the risk of flutter instability. The BTC is defined as a feature of twisting of the blade induced by the primary bending deformation. In the classical flutter, the BTC arises from the aerodynamic loads changing with the angle of attack. In this study, the effects of the structural BTC on the flutter are investigated by considering the layup unbalances (ply angle, material and thickness of the composite laminates) in the NREL 5-MW wind turbine rotor blade of glass fiber/epoxy [0₂/+45/-45]s laminates. It is numerically shown that the flutter speed may decrease by about 5 percent with unbalanced ply-angle only (one side angle, from 45° to 25°). It was then demonstrated that the flutter performance of the wind turbine blade can be increased by using lighter and stiffer carbon fibers which ensures the higher structural BTC at the same time.

키워드

Bend-twist couplingLarge-scale bladeFlutterAero-elasticitySHALLOW-ANGLED SKINSSTABILITYDESIGN
제목
Flutter performance of bend-twist coupled large-scale wind turbine blades
저자
Hayat, KhazarGorostidi Martinez de Lecea, AlvaroDonazar Moriones, CarlosHa, Sung Kyu
DOI
10.1016/j.jsv.2016.01.032
발행일
2016-05
유형
Article
저널명
Journal of Sound and Vibration
370
페이지
149 ~ 162