Rational upscaling of a semi-submersible floating platform supporting a wind turbine

被引:18
|
作者
Leimeister, Mareike [1 ,4 ]
Bachynski, Erin E. [2 ]
Muskulus, Michael [3 ]
Thomas, Philipp [4 ]
机构
[1] NTNU, Dept Marine Technol, NO-7491 Trondheim, Norway
[2] NTNU, Ctr Ships & Ocean Struct, NO-7491 Trondheim, Norway
[3] NTNU, Dept Civil & Transport Engn, NO-7491 Trondheim, Norway
[4] Fraunhofer Inst Wind Energy & Energy Syst Technol, D-27572 Bremerhaven, Germany
关键词
Offshore wind energy; semi-submersible floating platform; upscaling; wind turbine;
D O I
10.1016/j.egypro.2016.09.212
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This work examines the procedure of upscaling of a semi-submersible platform in order to support a predefined wind turbine. As a result of technological progress and design changes, basic scaling based on the turbine rating cannot be used directly. Furthermore, additional factors that floating structures have to deal with - like coupled dynamic motions, wave interaction, low frequency response and mooring system - have to be considered and included in the upscaling procedure. It is shown and discussed here, how to develop a rational upscaling process for a semi-submersible structure, under all these constraints, when the goal is to find a reasonable design of a platform, which would fit a predefined wind turbine, is producible, and has realistic dynamic behavior. (C) 2016 The Authors. Published by Elsevier Ltd.
引用
收藏
页码:434 / 442
页数:9
相关论文
共 50 条
  • [1] Numerical Modelling of a Floating Wind Turbine Semi-Submersible Platform
    Galera-Calero, Lander
    Blanco, Jesus Maria
    Iglesias, Gregorio
    [J]. APPLIED SCIENCES-BASEL, 2021, 11 (23):
  • [2] Design loads for a large wind turbine supported by a semi-submersible floating platform
    Liu, Jinsong
    Thomas, Edwin
    Goyal, Anshul
    Manuel, Lance
    [J]. RENEWABLE ENERGY, 2019, 138 : 923 - 936
  • [3] Switching LPV Control of a Floating Offshore Wind Turbine on a Semi-Submersible Platform
    Zhao, Pan
    Nagamune, Ryozo
    [J]. 2019 IEEE 28TH INTERNATIONAL SYMPOSIUM ON INDUSTRIAL ELECTRONICS (ISIE), 2019, : 664 - 669
  • [4] Movable Range and Position Control of an Offshore Wind Turbine with a Semi-submersible Floating Platform
    Han, Chenlu
    Homer, Jeffrey R.
    Nagamune, Ryozo
    [J]. 2017 AMERICAN CONTROL CONFERENCE (ACC), 2017, : 1389 - 1394
  • [5] The coupled dynamic response computation for a semi-submersible platform of floating offshore wind turbine
    Thanh Toan Tran
    Kim, Dong-Hyun
    [J]. JOURNAL OF WIND ENGINEERING AND INDUSTRIAL AERODYNAMICS, 2015, 147 : 104 - 119
  • [6] Effect of floating body spacing on hydrodynamic performance of semi-submersible wind turbine platform
    Zhang, Hongda
    Wang, Junlong
    Lu, Xiaoping
    Liu, Xiangyin
    [J]. Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2019, 40 (10): : 2912 - 2918
  • [7] A new methodology for upscaling semi-submersible platforms for floating offshore wind turbines
    Roach, Kaylie L.
    Lackner, Matthew A.
    Manwell, James F.
    [J]. WIND ENERGY SCIENCE, 2023, 8 (12) : 1873 - 1891
  • [8] Position Control of an Offshore Wind Turbine with a Semi-submersible Floating Platform Using the Aerodynamic Force
    Han, Chenlu
    Nagamune, Ryozo
    [J]. 2016 IEEE CANADIAN CONFERENCE ON ELECTRICAL AND COMPUTER ENGINEERING (CCECE), 2016,
  • [9] Design and performance analysis of control algorithm for a floating wind turbine on a large semi-submersible platform
    Kim, Kwansu
    Kim, Hyungyu
    Lee, Joonghyuk
    Kim, Seockhyun
    Paek, Insu
    [J]. SCIENCE OF MAKING TORQUE FROM WIND (TORQUE 2016), 2016, 753
  • [10] Mechanical Characteristics and Wake Analysis of Flow past a Semi-submersible Floating Wind Turbine Platform
    Deng, Lu
    Liu, Jianxiang
    [J]. Hunan Daxue Xuebao/Journal of Hunan University Natural Sciences, 2020, 47 (07): : 1 - 9