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Ocean Energy Systems Wave Energy Modelling Task: Modelling, Verification and Validation of Wave Energy Converters

Authors :
Fabian Wendt
Kim Nielsen
Yi-Hsiang Yu
Harry Bingham
Claes Eskilsson
Morten Kramer
Aurélien Babarit
Tim Bunnik
Ronan Costello
Sarah Crowley
Benjamin Gendron
Giuseppe Giorgi
Simone Giorgi
Samuel Girardin
Deborah Greaves
Pilar Heras
Johan Hoffman
Hafizul Islam
Ken-Robert Jakobsen
Carl-Erik Janson
Johan Jansson
Hyun Yul Kim
Jeong-Seok Kim
Kyong-Hwan Kim
Adi Kurniawan
Massimiliano Leoni
Thomas Mathai
Bo-Woo Nam
Sewan Park
Krishnakumar Rajagopalan
Edward Ransley
Robert Read
John V. Ringwood
José Miguel Rodrigues
Benjamin Rosenthal
André Roy
Kelley Ruehl
Paul Schofield
Wanan Sheng
Abolfazl Shiri
Sarah Thomas
Imanol Touzon
Imai Yasutaka
Source :
Journal of Marine Science and Engineering, Vol 7, Iss 11, p 379 (2019)
Publication Year :
2019
Publisher :
MDPI AG, 2019.

Abstract

The International Energy Agency Technology Collaboration Programme for Ocean Energy Systems (OES) initiated the OES Wave Energy Conversion Modelling Task, which focused on the verification and validation of numerical models for simulating wave energy converters (WECs). The long-term goal is to assess the accuracy of and establish confidence in the use of numerical models used in design as well as power performance assessment of WECs. To establish this confidence, the authors used different existing computational modelling tools to simulate given tasks to identify uncertainties related to simulation methodologies: (i) linear potential flow methods; (ii) weakly nonlinear Froude−Krylov methods; and (iii) fully nonlinear methods (fully nonlinear potential flow and Navier−Stokes models). This article summarizes the code-to-code task and code-to-experiment task that have been performed so far in this project, with a focus on investigating the impact of different levels of nonlinearities in the numerical models. Two different WECs were studied and simulated. The first was a heaving semi-submerged sphere, where free-decay tests and both regular and irregular wave cases were investigated in a code-to-code comparison. The second case was a heaving float corresponding to a physical model tested in a wave tank. We considered radiation, diffraction, and regular wave cases and compared quantities, such as the WEC motion, power output and hydrodynamic loading.

Details

Language :
English
ISSN :
20771312
Volume :
7
Issue :
11
Database :
Directory of Open Access Journals
Journal :
Journal of Marine Science and Engineering
Publication Type :
Academic Journal
Accession number :
edsdoj.b7f065c2ec874ee4a1634f1bee39fd83
Document Type :
article
Full Text :
https://doi.org/10.3390/jmse7110379