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OC5 Project Phase Ib: Validation of Hydrodynamic Loading on a Fixed, Flexible Cylinder for Offshore Wind Applications

Sammendrag

This paper summarizes the findings from Phase Ib of the Offshore Code Comparison, Collaboration, Continued with Correlation (OC5) project. OC5 is a project run under the International Energy Agency (IEA) Wind Research Task 30, and is focused on validating the tools used for modelling offshore wind systems through the comparison of simulated responses of select offshore wind systems (and components) to physical test data. For Phase Ib of the project, simulated hydrodynamic loads on a flexible cylinder fixed to a sloped bed were validated against test measurements made in the shallow water basin at the Danish Hydraulic Institute (DHI) with support from the Technical University of Denmark (DTU). The first phase of OC5 examined two simple cylinder structures (Phase Ia and Ib) to focus on validation of hydrodynamic models used in the various tools before moving on to more complex offshore wind systems and the associated coupled physics. Verification and validation activities such as these lead to improvement of offshore wind modelling tools, which will enable the development of more innovative and cost-effective offshore wind designs.
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Kategori

Vitenskapelig artikkel

Språk

Engelsk

Forfatter(e)

  • Amy N. Robertson
  • Fabian Wendt
  • Jason M. Jonkman
  • Wojciech Popko
  • Michael Borg
  • H. Bredmose
  • Flemming Schlutter
  • Jacob Qvist
  • Roger Bergua
  • Rob Harries
  • Anders Yde
  • Tor Anders Nygaard
  • Jacobus Bernardus de Vaal
  • Luca Oggiano
  • Pauline Bozonnet
  • Ludovic Bouy
  • Carlos Barrera Sanchez
  • Raul Guanche Garcia
  • Erin Elizabeth Bachynski
  • Ying Tu
  • Ilmas Bayati
  • Friedemann Borisade
  • Hyunkyoung Shin
  • Tjeerd van der Zee
  • Matthieu Guerinel

Institusjon(er)

  • SINTEF Ocean / Energi og transport
  • Danmarks Tekniske Universitet
  • DHI
  • Frankrike
  • IFP Energies nouvelles
  • Politecnico di Milano
  • Knowledge Centre WMC
  • Portugal
  • Spania
  • Universidad de Cantabria
  • Universität Stuttgart
  • Fraunhofer-Institut für Windenergie und Energiesystemtechnik
  • Norges teknisk-naturvitenskapelige universitet
  • University of Ulsan
  • 4subsea
  • DNV
  • National Renewable Energy Laboratory
  • Institutt for energiteknikk

År

2016

Publisert i

Energy Procedia

Årgang

94

Side(r)

82 - 101

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