May 4, 2024 10:32 am
Intent to Secure $48 Million in Funding for National and Regional Research and Development of Offshore Wind Technologies

Floating offshore wind systems are a promising technology that has the potential to significantly reduce greenhouse gas emissions and increase renewable energy generation. To enhance this technology, innovative approaches are needed to address both immediate needs for the initial U.S. floating offshore wind projects and long-term objectives aimed at reducing costs and enhancing efficiency across various aspects of validation, fabrication, installation, and operation.

One of the subtopics under this topic area is Subtopic 1a, which will focus on refining and innovating floating platform design, manufacturing, and deployment processes. This subtopic will involve research, development, and testing activities targeted at enhancing the materials, manufacturing techniques, and installation methods of floating offshore wind systems. Testing may involve scale models or full-scale prototypes to validate improvements in the manufacturing procedures. Furthermore, research and testing may explore the development of facilities and equipment for constructing and deploying various designs of floating offshore platforms.

Another subtopic under this topic area is Subtopic 1b, which will focus on next-generation integrated turbine/platform research. This subtopic will involve research and development efforts aimed at understanding the interactions between turbines, towers, platforms, and mooring systems. The objective is to create simpler, cost-effective designs that increase overall efficiency and energy production. Research topics may include the use of modeling tools and methods, testing procedures, and the exploration of new controls and materials to further enhance the integrated turbine/platform systems.

In conclusion, enhancing floating offshore wind systems through innovative approaches is essential for achieving long-term objectives aimed at reducing costs and enhancing efficiency across various aspects of validation, fabrication, installation, and operation. By focusing on refining floating platform design

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