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An investigation into the effect of scour on the natural frequency of an offshore wind turbine

Prendergast, L.J.; Gavin, K.; Doherty, P.

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Authors

K. Gavin

P. Doherty



Abstract

Rapid expansion of the offshore wind industry has stimulated a renewed interest in the behaviour of offshore piles. There is widespread acceptance in practice that pile design methods developed for the offshore oil and gas industry may not be appropriate for designing wind turbine foundations. To date, the majority of offshore wind turbines are supported by large diameter monopiles. These foundations are sensitive to scour which can reduce their ultimate capacity and alter their dynamic response. In this paper, the use of a vibration-based method to monitor scour is investigated. The effect of scour on the natural frequency of a model monopile was measured in a scale model test. A spring–beam finite element numerical model was developed to examine the foundation response. The model, which used springs tuned to the small-strain stiffness of the sand, was shown to be capable of capturing the change in frequency observed in the scale test. This numerical procedure was extended to investigate the response of a full-scale wind turbine over a range of soil densities, which might be experienced at offshore development sites. Results suggest that wind turbines founded in loose sand would exhibit the largest relative reductions in natural frequency resulting from scour.

Citation

Prendergast, L., Gavin, K., & Doherty, P. (2015). An investigation into the effect of scour on the natural frequency of an offshore wind turbine. Ocean Engineering, 101, 1-11. https://doi.org/10.1016/j.oceaneng.2015.04.017

Journal Article Type Article
Acceptance Date Apr 6, 2015
Online Publication Date Apr 21, 2015
Publication Date Jun 1, 2015
Deposit Date Aug 21, 2018
Publicly Available Date Aug 22, 2018
Journal Ocean Engineering
Print ISSN 0029-8018
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 101
Pages 1-11
DOI https://doi.org/10.1016/j.oceaneng.2015.04.017
Public URL https://nottingham-repository.worktribe.com/output/1042112
Publisher URL https://www.sciencedirect.com/science/article/pii/S002980181500092X?via%3Dihub
Contract Date Aug 21, 2018

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