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Revision as of 17:12, 19 June 2011 by KathrynLybarger (talk | contribs) (typo fix)(diff) ← Previous revision | Latest revision (diff) | Newer revision → (diff)Carnegie Wave Energy Limited (ASX: CWE), is the Australian ASX-listed inventor, owner and developer of the patented CETO wave energy technology that converts ocean swell into zero emission renewable power and desalinated freshwater. Carnegie has raised over $45m to fund the development of the Ceto technology and employs unique rapid prototyping utilising computational simulation, wave tank testing, scaled in-ocean testing at its private Wave Energy Research Facility and onshore/offshore test site at Fremantle, Western Australia and commercial scale in-ocean testing at Garden Island, Western Australia.
CETO is designed to be the simplest and most robust wave technology globally and, after 10 years of continuous development, testing and refinement, has recently been demonstrated at commercial scale off HMAS Stirling, Australia’s largest navy base, at Garden Island in Western Australia. CETO is the only ocean-tested wave energy technology globally that is both fully submerged and generates power and or desalinated water onshore. The CETO technology has been independently verified by EDF – Energies Nouvelles (EDF EN) and the French naval contractor DCNS.
CETO Technology
Named after a Greek ocean goddess, Ceto, the CETO system distinguishes itself from other traditional wave energy devices by being a fully submerged, pumping technology that drives the hydraulic fluid onshore therefore generating power by a standard Reverse osmosis system. Submerged buoys are moved up and down by the ocean swell, driving pumps which pressurize freshwater that is delivered ashore by a subsea pipeline. Once onshore, the high-pressure freshwater is used to drive hydro turbines, generating zero-emission electricity. Traditionally, wave technologies are characterized as offshore, floating power stations.
The high-pressure water can also used to supply a reverse osmosis desalination plant, creating zero-emission freshwater. Currently, seawater desalination plants are large emitters of greenhouse gases due to the amount of energy required to drive grid-connected pumps that deliver the high pressure seawater to reverse osmosis membranes which remove the salt from the seawater.
Projects
Perth Wave Energy Project (PWEP)
Stage 1 which has already been completed, involves the manufacture, deployment and testing of a single commercial-scale autonomous CETO unit off Garden Island. For this stage, the CETO unit is not connected to shore but is stand-alone and autonomous providing telemetric data back to shore for confirmation and independent verification of the units’ performance.
Stage 2 of the project involves the design, construction, deployment and operational performance evaluation of a grid-connected commercial-scale wave energy demonstration project at Garden Island, Western Australia. The facility will consist of multiple submerged CETO units in an array, subsea pipeline(s) to shore, hydraulic conditioning equipment and an onshore power generation facility.
La Réunion Wave Energy Project
The Réunion Island project is the first Joint Venture (JV) project between Carnegie and EDF Energies Nouvelles under the terms of their CETO Power JV and licence agreement. The project will initially consist of the deployment of a single, autonomous commercial scale unit (stage 1) which will be followed by a 2MW plant (stage 2) and a further expansion of the project to a nominal 15MW installed capacity (stage 3). Stage 1 of the project has been awarded $5M of French Government funding.
Ireland Wave Energy Project
Carnegie has signed a formal funding and collaboration agreement with the Irish Government's Sustainable Energy Association (SEAI) for a €150,000 project to evaluate potential CETO wave sites in Ireland and develop a site specific conceptual design. The project is 50% funded by the SEAI and 50% by Carnegie and forms the first phase of detailed design for a potential 5MW commercial demonstration project in Irish waters. The project is underway and is being managed through Carnegie's Irish subsidiary, CETO Wave Energy Ireland Limited.
Relationships
Western Australian Government - $12.5m grant for the Perth Wave Energy Project at Garden Island.
Australian Department of Defence & Defence Support Group - MoU for Collaboration on a CETO power and water project and offtake.
EDF EN - Northern Hemisphere CETO Power licensee and JV development partner.
French Government - $5m grant for Carnegie/EDF EN Stage 1 Réunion Island power project.
DCNS - Northern HemisphereEPCM partner.
Sustainable Energy Authority of Ireland - Collaboration agreement & concept funding for a 5MW Irish CETO power project.
British Columbia Government - Grant of $2 million for a Canadian CETO project.
Australian National Centre of Excellence in Desalination - Desalination research project with funding granted.
Other wave energy & CETO characteristics
- Wave energy is a renewable, high availablity, zero emission source of power.
- Approximately 60% of the world lives within 60 kilometers of a coast, minimising transmission issues.
- Since water is about 800 times denser than air, the energy density of waves exceeds wind and solar, thus increasing the amount of energy available for harvesting.
- Waves are predictable in advance, making it easy to match supply and demand.
- CETO sits underwater, moored to the sea floor, meaning there is no visual impact.
- CETO units operate in deep water, away from breaking waves. The waves regenerate once they pass the CETO units, meaning there is no impact on popular surfing sites.
- CETO units are designed to operate in harmony with the waves, rather than attempting to resist them. This means there is no need for massive steel and concrete structures to be built.
- CETO is the only wave energy technology that produces fresh water directly from wave energy by magnifying the pressure variations in ocean waves.
- Any combination of power and water can be achieved from 100% power to 100% water, combinations can be changed rapidly allowing intraday production modulation.
- CETO contains no oils, lubricants or offshore electrical components. It is built largely from existing offshore components with a known sub-sea life of over 25 years.
- CETO units act like artificial reefs, because of the way they attract marine life.
References
- Carnegie Wave Energy, 2011. Available from <http://www.carnegiewave.com/>
- Desalination, 2010. Available from <http://www.environment.gov.au/soe/2006/publications/emerging/desal/index.html>
- Carnegie Wave Energy, 2011. Available from <http://www.carnegiewave.com/>
- Carnegie Wave Energy, 2011. Available from <http://www.carnegiewave.com/>
- Carnegie Wave Energy, 2011. Available from <http://www.carnegiewave.com/>
See also
- Wave energy
- Water desalination
- Wave farm
- Baseload
- Reverse Osmosis
- World energy resources and consumption
External links
- Carnegie Wave Energy Limited
- World of Energy
- RISE
- Western Australian Sustainable Energy Association
- Carbon Trust