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  • About
    • Policy and Innovation Group
    • The team
    • Contact
  • Projects
    • Present Projects >
      • EnFAIT
      • EVOLVE
      • ETIP Ocean 2
      • FORWARD2030
      • SuperGen ORE
    • Past Projects: Devices and subsystems >
      • C-Gen
      • CLEARWATER
      • E-Drive
      • Elasto
      • EMERGE
      • FLOTANT
      • Hi-Drive
      • IMAGINE
      • Inflatable DEG–PTO
      • LEANWIND
      • NeSSIE
      • OPERA
      • ORECCA
      • TiPA
      • TROPOS
      • UMACK
      • Waveboost
      • Wavetrain
    • Past Projects: Tools and coordination >
      • DTOcean
      • DTOceanPlus
      • ETIP Ocean
      • IEC
      • International Marine Energy Attractiveness Index
      • MARINET
      • OES Vision for Ocean Energy
      • SI OCEAN
      • SuperGEN
      • UKERC
      • UKERC Book
  • Publications
    • Reports and Papers
    • Wave Energy Programme
  • Roadmaps
    • UKERC Roadmap
    • ETI Roadmap
    • MEAP
    • US Roadmap
    • Canadian Roadmap
    • ORECCA Roadmap
    • OES Vision for Ocean Energy
    • Chilean Roadmap
  • Sector Engagement
    • EERA
    • ETIP Ocean
    • OES IEA
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Centers for Marine Renewable Energy in Europe and North America
Authors:

Markus Mueller
Henry Jeffrey
Robin Wallace
A. von Jouanne



Original Language
Pages
Number of Pages
Journal
Journal publication date
Volume
Issue
State

Download
English
42-52
11
Oceanography
Jun 2010
23
2
Published
oceanography_issue.pdf
File Size: 288 kb
File Type: pdf
Download File

Abstract
Since the late 1990s, there has been increased interest in marine renewable energy, such as wave and tidal current. Wave and tidal current energy has the potential to supply 15% of the UK's electricity needs, and in the United States the potential is about 7%. Unlike wind, there is no single technological solution to harnessing energy from waves and tidal currents. As a result, many different devices are being developed, and so far there is no optimum solution. Because ocean energy systems operate in a harsh environment, there are significant engineering and environmental challenges to overcome. The UK Energy Research Centre Marine Renewable Energy Technology Roadmap classifies these challenges in terms of predictability, manufacturability, survivability, installability, affordability, and reliability. A number of centers and consortia throughout the world are working toward addressing these challenges, including the European Marine Energy Center (Scotland), SuperGen Marine Energy Research Consortium (UK), Hydraulics Maritime Research Centre (Ireland), Wave Hub & PRIMaRE (South West England), Northwest National Marine Renewable Energy Center in Oregon and Washington (US), the Hawai'i National Marine Renewable Energy Center (US), and the Fundy Ocean Research Centre for Energy in the Bay of Fundy, Nova Scotia (Canada).
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