Experiments on the WavePiston, Wave Energy Converter

E. Angelelli, B. Zanuttigh, Jens Peter Kofoed, K. Glejbøl

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Abstract

This paper analyses the performance of a new Wave Energy Converter (WEC) of the Oscillating Water Column type (OWC), named WavePiston. This near-shore floating device is composed of plates (i.e. energy collectors) sliding around a cylinder, that is placed perpendicular to the shore. Tests in the wave basin at Aalborg University allowed to investigate power production in the North Sea typical wave climate, with varying design parameters such as plate dimensions and their mutual distance. The power produced per meter by each collector is about the 5% of the available wave power. Experimental results and survivability considerations suggest that the WavePiston would be particularly suited for installations in milder seas. An example application is therefore presented in the Mediterranean Sea, off-shore the island of Sicily. In this case, each collector harvests the 10% of the available wave power. In order to allow the extension of the experimental dataset, an analytical model, based on mass-spring-damper system concept, is under development. The model is calibrated in order to represent the laboratory results for regular waves.
Original languageEnglish
Title of host publication9th ewtec 2011 : Proceedings of the 9th European Wave and Tidal Conference, Southampton, UK, 5th-9th September 2011
EditorsAbuBakr S. Bahaj
Number of pages10
PublisherUniversity of Southampton
Publication date2011
Publication statusPublished - 2011
EventThe 9th European Wave and Tidal Energy Conference : EWTEC 2011 - Southampton, United Kingdom
Duration: 5 Sept 20119 Sept 2011

Conference

ConferenceThe 9th European Wave and Tidal Energy Conference : EWTEC 2011
Country/TerritoryUnited Kingdom
CitySouthampton
Period05/09/201109/09/2011

Bibliographical note

Published on a cd.

Keywords

  • WavePiston
  • Wave Energy Converters
  • WEC
  • Oscillating Water Column
  • OWC
  • Power Performance
  • Experiments
  • Design Optimisation
  • Analytic Model

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  • SDWED: Structural design of wave energy devices (SDWED)

    Kofoed, J. P. (Project Coordinator), Frigaard, P. (Project Participant), Sørensen, J. D. (Project Participant), Pedersen, J. K. (Project Participant), Lu, K. (Project Participant), Sørensen, J. T. (Project Participant), Bingham, H. (Project Participant), Ferreira, C. B. (Project Participant), Zanuttigh, B. (Project Participant), Estefan, S. F. (Project Participant), Nielsen, K. (Project Participant), Brito-Melo, A. (Project Participant), Sterndorff, M. (Project Participant), Ingram, D. (Project Participant) & Bard, J. (Project Participant)

    01/01/201031/12/2014

    Project: Research

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