WINDFLOAT: A FLOATING FOUNDATION FOR OFFSHORE WIND TURBINES PART III: STRUCTURAL ANALYSIS

被引:0
|
作者
Aubault, Alexia [1 ]
Cermelli, Christian [1 ]
Roddier, Dominique [1 ]
机构
[1] Marine Innovat & Technol, Berkeley, CA USA
来源
OMAE 2009, VOL 1: OFFSHORE TECHNOLOGY | 2009年
关键词
Ocean Renewable Energy; Floating Foundation for Wind Turbines; Offshore Wind; Structural Design; Fatigue; Strength;
D O I
暂无
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Wind Float is a floating foundation for large offshore wind turbines. This paper describes the structural engineering that was performed as part of the feasibility study conducted for qualification of the technology. Specifically, the preliminary scantling is described and the strength and fatigue analysis methodologies are explained, focusing on the following aspects the coupling between the wind turbine and the hull the interface between the hydrodynamic loading and the structural response. Prior to reading this manuscript, the reader is strongly encouraged to read the related paper, which focuses on the design basis for the Wind Float, and explores the requirements that must be addressed by the design teams in this new field. An additional paper in this series describes the hydrodynamic analysis and experimental validations.
引用
收藏
页码:213 / 220
页数:8
相关论文
共 50 条
  • [31] Dynamics of offshore floating wind turbines-analysis of three concepts
    Jonkman, J. M.
    Matha, D.
    WIND ENERGY, 2011, 14 (04) : 557 - 569
  • [32] Dynamic Analysis of Mooring Cables with Application to Floating Offshore Wind Turbines
    Petrone, Crescenzo
    Oliveto, Nicholas D.
    Sivaselvan, Mettupalayam V.
    JOURNAL OF ENGINEERING MECHANICS, 2016, 142 (03)
  • [33] A NEW METHOD FOR THE DESIGN AND COUPLED ANALYSIS OF FLOATING OFFSHORE WIND TURBINES
    Veen, Daniel
    Pahos, Spiro J.
    Meng, Shawn
    Dillenburg, Simon
    PROCEEDINGS OF ASME 2023 42ND INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE & ARCTIC ENGINEERING, OMAE2023, VOL 8, 2023,
  • [34] An Improved Failure Mode and Effect Analysis of Floating Offshore Wind Turbines
    Li, He
    Teixeira, A. P.
    Guedes Soares, C.
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2022, 10 (11)
  • [35] Wind Tunnel Wake Measurements of Floating Offshore Wind Turbines
    Bayati, I.
    Belloli, M.
    Bernini, L.
    Zasso, A.
    14TH DEEP SEA OFFSHORE WIND R&D CONFERENCE, EERA DEEPWIND'2017, 2017, 137 : 214 - 222
  • [36] Development of offshore wind power and foundation technology for offshore wind turbines in China
    Zhang, Jianhong
    Wang, Hao
    OCEAN ENGINEERING, 2022, 266
  • [37] MODEL TEST OF INTEGRATED FLOATING TRANSPORT TECHNOLOGY OF OFFSHORE WIND TURBINES WITH COMPOSITE BUCKET FOUNDATION
    Ding, Hongyan
    Meng, Lingqian
    Zhang, Puyang
    Le, Conghuan
    PROCEEDINGS OF THE ASME 37TH INTERNATIONAL CONFERENCE ON OCEAN, OFFSHORE AND ARCTIC ENGINEERING, 2018, VOL 3, 2018,
  • [38] Combined current and wind simulation for floating offshore wind turbines
    Otter, A.
    Desmond, C.
    Flannery, B.
    Murphy, J.
    EERA DEEPWIND OFFSHORE WIND R&D CONFERENCE, DEEPWIND 2022, 2022, 2362
  • [39] Padeye positioning of composite bucket foundation for joint exploitation of offshore wind turbines and floating photovoltaics
    Li, Qingxin
    Li, Chengfeng
    Liu, Run
    OCEAN ENGINEERING, 2024, 313
  • [40] Dynamic analysis of tripod pile foundation in clays for offshore wind turbines
    Cheng, Xinglei
    Li, Maolin
    Ma, Chao
    El Naggar, M. Hesham
    Wang, Piguang
    Sun, Xiaohan
    OCEAN ENGINEERING, 2023, 287