It is possible to reduce the Cost of Energy from Wave Energy Converters by utilizing Digital Hydraulic Power Take Off. The project aims at solving the main technical hindrance for enabling wave energy
The purpose is to secure a strong Danish representation in the international committee working with standardization through IEC TC-114. The project secures, that Denmark will be able to influence and
The project is part of the development of a tradition of cooperation for further development of wave energy, here, through the implementation of an exemplary development process. The project contains
The objective of the project is to develop a gyro electric converter unit for wave energy, and to test experimentally a 5 kW unit under realistic conditions.
The objective of this proof of concept project is to investigate the WaveSpring technology and how it can benefit wave energy converters (WECs). It is expected that the results from the project will
The objectives of the project are to design, test and develop cost efficient mooring solutions for large floating wave energy converters (WECs) and to build national competences in design and
The Danish wave power industry has in connection with this application created a partnership that aims to initiate, strengthen and develop cooperation, and develop a comprehensive joint strategy for
The next step in the development of the Wave Dragon technology is the deployment of a full-scale device in open sea. The development of a 1.5 MW Wave Dragon demonstrator will be based on experiences
Establishment of a data base of O&M data for Wave Dragon established in Nissum Bredning. Large uncertainty exists about fatigue impact on single components used in a wave device caused by repeated
Waveenergyfyn v/ Henning Pilgaard
ForskEL
2010
2011
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DEXA1:5 is a development project which aims to use an innovative, simple and flexible technology to validate wave energy as a cost-effective, competitive source of electrical power. Activities defined