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Wave loads on monopile-supported offshore wind turbines: Current methods and future challenges

Marino, Enzo; Mockute, Agota; Borri, Claudio; Lugni, Claudio

Authors

Enzo Marino

Agota Mockute

Claudio Borri

Claudio Lugni



Contributors

Hamid Reza Reza Karimi
Editor

Abstract

This chapter provides an overview of the methods recently proposed for the prediction of the wave loads on fixed-bottom wind turbines, with particular emphasis on the role of nonlinear wave contributions in the assessment of the dynamic response of the support structure. After a brief presentation of the common numerical approaches to the simulation of OWTs, we review the fundamental equations governing the wave motions, briefly present a numerical method for the numerical solution of the fully nonlinear (FNL) problem and finally summarize the main commonly used analytical wave theories. The available hydrodynamic loading models are discussed, and an overview of the main literature findings and open issues in modelling the nonlinear resonant effects follows. Some key examples of the effects of highly nonlinear waves on the response of a 5-MW OWT are given and finally, a conclusion summarizes the current situation and future trends.

Citation

Marino, E., Mockute, A., Borri, C., & Lugni, C. (2018). Wave loads on monopile-supported offshore wind turbines: Current methods and future challenges. In H. R. Reza Karimi (Ed.), Structural Control and Fault Detection of Wind Turbine Systems (9-44). London: Institution of Engineering and Technology (IET). https://doi.org/10.1049/PBPO117E_ch2

Online Publication Date Aug 31, 2018
Publication Date Aug 31, 2018
Deposit Date Apr 4, 2022
Publisher Institution of Engineering and Technology (IET)
Pages 9-44
Series Title IET ENERGY ENGINEERING
Series Number 117
Book Title Structural Control and Fault Detection of Wind Turbine Systems
Chapter Number 2
ISBN 9781785613944
DOI https://doi.org/10.1049/PBPO117E_ch2
Public URL https://hull-repository.worktribe.com/output/3615961