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Ocean Energy Systems (OES)

The Ocean Energy Systems Implementing Agreement (OES) is an intergovernmental collaboration between countries, which operates under framework established by the International Energy Agency in Paris.The Ocean Energy Systems Implementing Agreement (OES) was launched in 2001. The need for technology cooperation was identified in response to increased activity in the development of ocean wave and tidal current energy in the latter part of the 1990’s and the beginning of this decade, primarily in Denmark, Portugal and the United Kingdom. These three countries were the inaugural signatories to the OES.
The OES brings together countries to advance research, development and demonstration of conversion technologies to harness energy from all forms of ocean renewable resources, such as tides, waves, currents, temperature gradient (ocean thermal energy conversion and submarine geothermal energy) and salinity gradient for electricity generation, as well as for other uses, such as desalination, through international cooperation and information exchange.

Country:
International

Marine Energy Documents Related to Ocean Energy Systems (OES)

Tethys Engineering is a knowledge hub that contains documents and resources about the technical aspects of marine energy development. The table below contains all of the documents in the Tethys Engineering Knowledge Base associated with Ocean Energy Systems (OES).

Total: 24

Title Author Date Sort ascending Type of Content Technology Collection Method Engineering
Technology Push, Market Pull: In-Depth Analysis and Policy Guidance for the Ocean Energy Sector Collins, I., Schia, M., Jeffrey, H. Guidance Current, Wave
Self-Sustained Desalination Technologies Powered by Ocean Energy Brewster, P., Irwin, P. Report
OES TASK 10 - Numerical Modelling of Wave Energy Converters Nielsen, K. Report Wave, Oscillating Water Column Modeling
Spotlight on Ocean Energy 2024 Ocean Energy Systems (OES) Report Current, Wave, Salinity Gradient, OTEC
Workshop on Tidal Current Extractable Energy: Modelling, Verification and Validation Narasimalu, S., Thiébot, J., Lakshmanan, S. Report Current, Tidal Modeling
Ocean Thermal Energy Conversion (OTEC) Economics: Updates and Strategies Vega, L., Martin, B. Report OTEC Modeling
Ocean Energy and Net Zero: An International Roadmap to Develop 300GW of Ocean Energy by 2050 Gordon, F., Grattan, K., Jeffrey, H. Report Current, Tidal, Wave
An International Evaluation and Guidance Framework for Ocean Energy Technology (2023) Hodges, J., Henderson, J., Ruedy, L. Report Current, Wave
Wave Energy Developments Highlights 2023 Ocean Energy Systems (OES) Report Wave
3rd International Marine Energy Data Sharing Workshop Report Copping, A., Weers, J., Castillo, C. Report
Tidal Current Energy Developments Highlight 2023 Ocean Energy Systems (OES) Report Current, Tidal
Supporting Ocean Energy Technology Development and Commercialisation: Coherent Application of Guidance, Standards and Certification De Roeck, Y., Colby, J., Zeitz, W. Report Current, Wave
White Paper on Ocean Thermal Energy Conversion (OTEC) Ocean Energy Systems Report OTEC
Tidal Current Energy Developments Highlights Ocean Energy Systems Report Current, Tidal
Wave Energy Developments Highlights Ocean Energy Systems Report Wave
An International Evaluation and Guidance Framework for Ocean Energy Technology Hodges, J., Henderson, J., Ruedy, L. Report Current, Tidal, Wave Control, Performance
Ocean Energy in Islands and Remote Coastal Areas: Opportunities and Challenges Ocean Energy Systems Report Current, Wave, OTEC
Spotlight on Ocean Energy Ocean Energy Systems Report Current, Wave
Ocean Energy in Insular Conditions Quirapas, M., Narasimalu, S. Report Current, Wave
International Levelised Cost of Energy for Ocean Energy Technologies Ocean Energy Systems Report Current, Wave
Integrating Wave and Tidal Current Power: Case Studies through Modelling and Simulation Santos, M., Salcedo, F., Ben Haim, D. Report Current, Tidal, Wave Modeling Grid Integration
Annex II Extension Development of Recommended Practices for Testing and Evaluating Ocean Energy Systems Summary Report Nielsen, K. Report Current, Tidal, Wave
Potential Opportunities and Differences Associated with Integration of Ocean Wave and Marine Current Energy Plants in Comparison to Wind Energy Khan, J., Bhuyan, G., Moshref, A. Report Current, Tidal, Wave Grid Integration
Key Features and Identification of Needed Improvements to Existing Interconnection Guidelines for Facilitating Integration of Ocean Energy Pilot Projects Khan, J., Bhuyan, G., Moshref, A. Report Current, Tidal, Wave Grid Integration
Displaying 1 - 24 of 24 results