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CFD Study of the Non-Linear Physical Phenomena of the TLP of a 15-MW-Class FOWT under Extreme Wavesopen access

Authors
Ha, Yoon-JinKim, Kyong-HwanPark, Ji-Yong
Issue Date
10월-2023
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Keywords
computational fluid dynamics; dynamic tension; extreme wave; platform motion; wave impact
Citation
Journal of Marine Science and Engineering, v.11, no.10
Journal Title
Journal of Marine Science and Engineering
Volume
11
Number
10
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/10336
DOI
10.3390/jmse11101915
ISSN
2077-1312
2077-1312
Abstract
In this study, a numerical simulation was conducted to investigate the non-linear physical phenomena of a tension leg platform (TLP) of a 15-MW-class floating offshore wind turbine (FOWT). Computational fluid dynamics was employed as the numerical tool, and a deforming mesh technique was used to describe the moving body. To examine the non-linear physical phenomena, an irregular wave was generated with a focus on head sea conditions. The springing and ringing responses were calculated from the numerical simulation results, and the relations between the motions and dynamic tensions of the 15-MW-class FOWT TLP were investigated. From the irregular wave impact simulation, it was found that the springing response via the wave sum frequencies and the ringing response occurred at approximately three times the wave peak frequency. Additionally, whipping simulations were conducted under a focused wave. The results show that the response in pitch resonance frequency was caused by the wave impact. The numerical results of this study could be used as fundamental data for FOWT TLP design. ? 2023 by the authors.
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