Research & Development

Projet

DTOCEAN+

Advanced design tools for ocean energy systems innovation, development and deployment

Context

The Ocean Energy Roadmap indicates that ocean energy could meet 10% of the European Union’s electricity demand by 2050. The seas and oceans could therefore play an important role in meeting one of Europe’s biggest challenges today. This is to ensure the energy transition from a system based on fossil and imported fuels to a flexible and interconnected system based on clean, renewable and infinite domestic resources.

The technologies for exploiting wave and tidal resources are not yet mature enough to be used on a large scale because of the still very high LCOE. This pitfall can be addressed with appropriate tools and processes that support market growth and technological innovation.

Projet DTOCEAN+

Objective

  • To develop the 2nd generation of a suite of open source software tools for the design and optimisation of wave and tidal farms

Main achievements

Identification of end user needs

Development of numerical tools for structured innovation, stage-gating, deployment and evaluation of wave and tidal farms, from the subsystem to the whole farm

Integration of the tools and testing with real world deployments in order to achieve a TRL6 software

Market analysis of the ocean energy sector

Conclusion

DTOCEAN+ project made it to develop and demonstrate an open source sotftware suite of second generation design tools for ocean energy technologies including sub-systems, energy capture devices and arrays. These tools support the entire technology innovation process, from concept, through development, to deployment. More broadly, the project also provided an industry standard for communicating technology descriptions throughout the sector. To complement the numerical work, an extensive market analysis of the ocean energy sector is publicly available.

Partners

This project was led by Tecnalia.

Logo Tecnalia
Logo University of Edinburgh
Logo Catapult Energy Systems
Logo Wave Energy Scotland
Logo France Energies Marines
Logo WavEC
Logo University of Aalborg
Logo Enel Green Power
Logo Bureau Veritas
Logo IDOM Oceantec
Logo Nova Innovation
Logo Corpower Ocean
Logo Open Cascade
Logo EDP New
Logo Orbital Marine Power
Logo Sabella
Logo Sandia National Laboratories
Logo NREL

Financement

This project received funding from the European Research and Innovation Programme Horizon 2020.

Logo Union européenne

Labellisation

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To go further

DTOCEAN+ Deliverable

Deliverable D2.1

Results from user-groups consultation

DTOCEAN+ Deliverable

Deliverable D2.2

Functional requirements and metrics of 2nd generation design tools

DTOCEAN+ Deliverable

Deliverable D2.3

Demonstration methodology

DTOCEAN+ Deliverable

Deliverable D3.1

Technical requirements for the implementation of structured innovation in ocean energy systems

DTOCEAN+ Deliverable

Deliverable D3.2

Structured Innovation design tool – Alpha version

DTOCEAN+ Deliverable

Deliverable D3.3

Testing and verification results of the structured innovation tool – Beta version

DTOCEAN+ Deliverable

Deliverable D4.1

Technical requirements for the implementation of a worldclass stage gate assessment framework in ocean energy

DTOCEAN+ Deliverable

Deliverable D4.2

Stage Gate tool – Alpha version

DTOCEAN+ Deliverable

Deliverable D4.3

Testing and verification results of the stage gate tool – Beta version

DTOCEAN+ Deliverable

Deliverable D5.1

Technical requirements for the deployment design tools

DTOCEAN+ Deliverable

Deliverable D5.2

Site characterisation – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.3

Energy capture tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.4

Energy transformation tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.5

Energy delivery tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.6

Station keeping tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.7

Logistics and marine operations tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D5.8

Testing and verification results of the deployment design tools – Beta version

DTOCEAN+ Deliverable

Deliverable D6.1

Technical requirements for the assessment design tools

DTOCEAN+ Deliverable

Deliverable D6.2

Performance and energy yield tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D6.3

Reliability, availability, maintainability and survivability – Alpha version

DTOCEAN+ Deliverable

Deliverable D6.4

System lifetime costs tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D6.5

Environmental and social acceptance tools – Alpha version

DTOCEAN+ Deliverable

Deliverable D6.6

Testing and verification results of the assessment design tools – Beta version

DTOCEAN+ Deliverable

Deliverable D7.1

Standard data formats of ocean energy systems

DTOCEAN+ Deliverable

Deliverable D7.2

Detailed description of demonstration scenarios

DTOCEAN+ Deliverable

Deliverable D7.3

Scenarios input data

DTOCEAN+ Deliverable

Deliverable D7.5

Database visualisation and maintenance tool

DTOCEAN+ Deliverable

Deliverable D7.6

Full suite of design tools for devices and arrays

DTOCEAN+ Deliverable

Deliverable D7.7

Demonstration results of integrated design tools for wave energy

DTOCEAN+ Deliverable

Deliverable D7.8

Demonstration results of integrated design tools for tidal energy

DTOCEAN+ Deliverable

Deliverable D7.9

Overall technical and sector recommendations

DTOCEAN+ Deliverable

Deliverable D8.1

Potential markets for ocean energy

DTOCEAN+ Deliverable

Deliverable D8.2

Analysis of the European supply chain

DTOCEAN+ Deliverable

Deliverable D8.3

Feasibility and cost-benefit analysis

DTOCEAN+ Deliverable

Deliverable D8.4

Developing ocean energy standards for business management models in ocean energy

DTOCEAN+ Deliverable

Deliverable D8.5

Relevant legal, institutional, and political frameworks

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