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document
Khoshmanesh, S. (author), Watson, S.J. (author), Zarouchas, D. (author)
Wind turbine blades carry the risk of impact damage during transportation, installation, and operation. Such impacts can cause levels of damage that can propagate throughout the structure compromising performance and safety. In this study, the effect of impact damage on fatigue damage propagation in test specimens representative of a spar cap...
journal article 2024
document
Khoshmanesh, S. (author), Watson, S.J. (author), Zarouchas, D. (author)
In this paper, a new indicator to localize fatigue damage in a fibre glass composite structure, i.e. spar cap to shear web thick adhesive joint of a wind turbine blade, is presented. This indicator is based on the effect of damping on the phase of the mode shapes of the structure. When fatigue damage occurs, damping increases in the defective...
journal article 2023
document
Khoshmanesh, S. (author), Watson, S.J. (author), Zarouchas, D. (author)
Wind turbine blade spar cap to shear web adhesively bonded connections can suffer from damage at the bond-line which can propagate through the structure compromising blade integrity. This study investigates changes in the stiffness and damping of a thick adhesive joint test specimen during a fatigue test. The stiffness is calculated using an...
journal article 2022