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  5. Semi-active control of vibrations of spar type floating offshore wind turbines

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Article
en
2016

Semi-active control of vibrations of spar type floating offshore wind turbines

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en
2016
Vol 18 (4)
Vol. 18
DOI: 10.12989/sss.2016.18.4.683

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Satish Nagarajaiah
Satish Nagarajaiah

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Van Nguyen Dinh
Biswajit Basu
Satish Nagarajaiah

Abstract

A semi-active algorithm for edgewise vibration control of the spar-type floating offshore wind turbine (SFOWT) blades, nacelle and spar platform is developed in this paper. A tuned mass damper (TMD) is placed in each blade, in the nacelle and on the spar to control the vibrations for these components. A Short Time Fourier Transform algorithm is used for semi-active control of the TMDs. The mathematical formulation of the integrated SFOWT-TMDs system is derived by using Euler-Lagrangian equations. The theoretical model derived is a time-varying system considering the aerodynamic properties of the blade, variable mass and stiffness per unit length, gravity, the interactions among the blades, nacelle, spar, mooring system and the TMDs, the hydrodynamic effects, the restoring moment and the buoyancy force. The aerodynamic loads on the nacelle and the spar due to their coupling with the blades are also considered. The effectiveness of the semi-active TMDs is investigated in the numerical examples where the mooring cable tension, rotor speed and the blade stiffness are varying over time. Except for excessively large strokes of the nacelle TMD, the semi-active algorithm is considerably more effective than the passive one in all cases and its effectiveness is restricted by the low-frequency nature of the nacelle and the spar responses.

How to cite this publication

Van Nguyen Dinh, Biswajit Basu, Satish Nagarajaiah (2016). Semi-active control of vibrations of spar type floating offshore wind turbines. , 18(4), DOI: https://doi.org/10.12989/sss.2016.18.4.683.

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Publication Details

Type

Article

Year

2016

Authors

3

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.12989/sss.2016.18.4.683

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