Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA

The coupled analysis between a turbine in operating condition and a complex jacket support structure was formulated in this paper for the reliable evaluation of offshore wind turbine structures including pile-soil-structure interactions (PSSIs). Discussions on the theoretical and simulation aspects...

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Main Authors: Pasin Plodpradit, Van Nguyen Dinh, Ki-Du Kim
Format: Article
Language:English
Published: MDPI AG 2019-04-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/8/1633
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spelling doaj-f638f5464147481cb193ba16f1dc745c2020-11-24T21:49:08ZengMDPI AGApplied Sciences2076-34172019-04-0198163310.3390/app9081633app9081633Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEAPasin Plodpradit0Van Nguyen Dinh1Ki-Du Kim2Konkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, KoreaMaREI Centre for Marine and Renewable Energy, University College Cork, Cork P43C573, IrelandKonkuk University, 120 Neungdong-ro, Gwangjin-gu, Seoul 05029, KoreaThe coupled analysis between a turbine in operating condition and a complex jacket support structure was formulated in this paper for the reliable evaluation of offshore wind turbine structures including pile-soil-structure interactions (PSSIs). Discussions on the theoretical and simulation aspects of the coupled analysis are presented. The dynamic coupled analysis was implemented in X-SEA program and validated with FAST v8 (fatigue, aerodynamics, structures and turbulence) developed by NREL, USA. By replacing the sub-structural module in the FAST with the component of offshore substructure in the X-SEA, the reaction forces and the turbine loads were calculated in each time step and the results from X-SEA were compared with that from FAST. It showed very good agreement with each other. A case study of a NREL 5MW offshore wind turbine on a jacket support structure was performed. Coupled dynamic analyses of offshore wind turbine and support structures with PSSI were carried out. The results showed that in the coupled analysis, the responses of the structure are significantly less than in the uncoupled analysis. The support structure considering PSSI exhibited decreased natural frequencies and more flexible responses compared to the fixed-support structure. The implemented coupled analysis including PSSI was shown to be more accurate and computationally efficient.https://www.mdpi.com/2076-3417/9/8/1633offshore wind turbinejacket foundationcoupled analysissoil-pile-structure interactionFEM model
collection DOAJ
language English
format Article
sources DOAJ
author Pasin Plodpradit
Van Nguyen Dinh
Ki-Du Kim
spellingShingle Pasin Plodpradit
Van Nguyen Dinh
Ki-Du Kim
Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
Applied Sciences
offshore wind turbine
jacket foundation
coupled analysis
soil-pile-structure interaction
FEM model
author_facet Pasin Plodpradit
Van Nguyen Dinh
Ki-Du Kim
author_sort Pasin Plodpradit
title Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
title_short Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
title_full Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
title_fullStr Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
title_full_unstemmed Coupled Analysis of Offshore Wind Turbine Jacket Structures with Pile-Soil-Structure Interaction Using FAST v8 and X-SEA
title_sort coupled analysis of offshore wind turbine jacket structures with pile-soil-structure interaction using fast v8 and x-sea
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-04-01
description The coupled analysis between a turbine in operating condition and a complex jacket support structure was formulated in this paper for the reliable evaluation of offshore wind turbine structures including pile-soil-structure interactions (PSSIs). Discussions on the theoretical and simulation aspects of the coupled analysis are presented. The dynamic coupled analysis was implemented in X-SEA program and validated with FAST v8 (fatigue, aerodynamics, structures and turbulence) developed by NREL, USA. By replacing the sub-structural module in the FAST with the component of offshore substructure in the X-SEA, the reaction forces and the turbine loads were calculated in each time step and the results from X-SEA were compared with that from FAST. It showed very good agreement with each other. A case study of a NREL 5MW offshore wind turbine on a jacket support structure was performed. Coupled dynamic analyses of offshore wind turbine and support structures with PSSI were carried out. The results showed that in the coupled analysis, the responses of the structure are significantly less than in the uncoupled analysis. The support structure considering PSSI exhibited decreased natural frequencies and more flexible responses compared to the fixed-support structure. The implemented coupled analysis including PSSI was shown to be more accurate and computationally efficient.
topic offshore wind turbine
jacket foundation
coupled analysis
soil-pile-structure interaction
FEM model
url https://www.mdpi.com/2076-3417/9/8/1633
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AT vannguyendinh coupledanalysisofoffshorewindturbinejacketstructureswithpilesoilstructureinteractionusingfastv8andxsea
AT kidukim coupledanalysisofoffshorewindturbinejacketstructureswithpilesoilstructureinteractionusingfastv8andxsea
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