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Offshore Code Comparison Collaboration, Continuation within IEA Wind Task 30: Phase II Results Regarding a Floating Semisubmersible Wind System: Preprint

  • Amy Robertson
  • , Jason Jonkman
  • , Fabian Vorpahl
  • , Wojciech Popko
  • , Jacob Qvist
  • , Lars Froyd
  • , Xiaohong Chen
  • , José Azcona
  • , Emre Uzunoglu
  • , Carlos Soares
  • , Chenyu Luan
  • , Huang Yutong
  • , Fu Pengcheng
  • , Anders Yde
  • , Torben Larsen
  • , James Nichols
  • , Ricard Buils
  • , Liu Lei
  • , Tor Nygaard
  • , Dimitris Manolas
  • Andreas Heege, Sigrid Vatne, Harald Ormberg, Tiago Duarte, Cyril Godreau, Hans Hansen, Anders Nielsen, Hans Riber, Cedric Le Cunff, Raimund Abele, Friedemann Beyer, Atsushi Yamaguchi, Kwang Jung, Hyunkyoung Shin, Marco Alves, Wei Shi, Hyunchul Park
  • Fraunhofer Institute for Wind Energy & Energy System Technology
  • 4Subsea
  • American Bureau of Shipping
  • Centro Nacional de Energías Renovables
  • Centre for Marine Technology & Ocean Engineering
  • Centre for Ships & Ocean Structures
  • China General Certification Center
  • Technical University of Denmark
  • DNV
  • Goldwind
  • Institute for Energy Technology
  • National Technical University of Athens
  • SAMTECH
  • Norwegian Marine Technology Research Institute
  • University of Lisbon
  • Danish Hydraulic Institute
  • PRINCIPIA Group
  • University of Stuttgart
  • The University of Tokyo
  • University of Ulsan
  • WavEC Offshore Renewables
  • Pohang University of Science & Technology

Research output: Contribution to conferencePaper

Abstract

Offshore wind turbines are designed and analyzed using comprehensive simulation tools (or codes) that account for the coupled dynamics of the wind inflow, aerodynamics, elasticity, and controls of the turbine, along with the incident waves, sea current, hydrodynamics, and foundation dynamics of the support structure. This paper describes the latest findings of the code-to-code verificationactivities of the Offshore Code Comparison Collaboration, Continuation (OC4) project, which operates under the International Energy Agency (IEA) Wind Task 30. In the latest phase of the project, participants used an assortment of simulation codes to model the coupled dynamic response of a 5-MW wind turbine installed on a floating semisubmersible in 200 m of water. Code predictions were comparedfrom load-case simulations selected to test different model features. The comparisons have resulted in a greater understanding of offshore floating wind turbine dynamics and modeling techniques, and better knowledge of the validity of various approximations. The lessons learned from this exercise have improved the participants' codes, thus improving the standard of offshore wind turbine modeling
Original languageAmerican English
Number of pages17
StatePublished - 2014
Event33rd International Conference on Ocean, Offshore and Arctic Engineering - San Francisco, California
Duration: 8 Jun 201313 Jun 2013

Conference

Conference33rd International Conference on Ocean, Offshore and Arctic Engineering
CitySan Francisco, California
Period8/06/1313/06/13

NLR Publication Number

  • NREL/CP-5000-61154

Keywords

  • continuation
  • IEA
  • NREL
  • OC4
  • offshore code comparison collaboration
  • offshore wind turbines
  • semisubmersible

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