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U.S. Offshore Wind Collaborative

. The mission of the US Offshore Wind Collaborative is to address the technical, environmental, economic, and regulatory issues necessary to catalyze the sustainable development of offshore wind energy in the waters of the United States.. . USOWC UPDATE. Incorporated as a 501c.3 organization in MA

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U.S. Offshore Wind Collaborative

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    2. The mission of the US Offshore Wind Collaborative is to address the technical, environmental, economic, and regulatory issues necessary to catalyze the sustainable development of offshore wind energy in the waters of the United States.

    3. USOWC UPDATE Incorporated as a 501c.3 organization in MA. Established National Board of Directors (first meeting December 1, 2009) Organized dialogue with NE and Mid-Atlantic Executive Agency Staff Working on research priorities with industry leaders Participating in planning for improving ocean management frameworks Published 2009-2010 Prospectus Published U.S. Offshore Wind Energy: A Path Forward Fundraising begun

    4. A Path Forward An overview of the following areas critical to sustainable offshore wind energy development: Regulation and government policies Technology development Economic and financial viability Environmental/marine use compatibility Leadership and coordination.

    5. Key Themes Growing Interest There is significant interest (especially at the state level) to pursue offshore wind development. Diverse Approaches States take a variety of regulatory and policy approaches Success requires federal-state partnership Financial Policies and Regulatory Structure as Drivers Clear government mandates for renewable energy production drive public and private investment Regulatory clarity and efficiency is key to building investor and public confidence

    6. ` Investment in Research and Development Cost Reduction Improvements in foundation design and materials; consideration of alternative and advanced strategies for offshore wind project construction and O&M activities. Reliability Improvement in diagnostics and preventative maintenance for turbines and sub-systems; consideration of alternative design concepts that could avoid traditional problems with gearbox and/or blade failure. Deeper-Water Technology Floating platform technology is still in the conceptual stage, and further design development will be costly. Extensive research and funding are needed to engage entrepreneurs and technologists, rigorously test various designs, and identify the best floating concepts.

    8. Special Use Vessels Limited protected, shallow-water sites More economic to assemble turbines onshore Vessel costs: $200,000M -$350,000M Jones Act

    9. Port Facilities Large lay-out area Deep water port Overhead clearance Proximity to anticipated project sites Rail access O & M capability

    10. Economic and Financial Viability Long-term Financial Incentives Stable, guaranteed, long-term financial incentives would lead to significant growth in the offshore wind energy sector. More Aggressive Incentives might include a national renewable electricity standard (with set-asides or multipliers for offshore wind energy), or a stronger incentive structure that follows European models. Increased Funding for Research and Development Aimed At: Increasing reliability and accessibility. Modifying traditional monopile and jacket foundation designs to take full advantage of transitional and deep-water wind development opportunities off U.S. coasts. Developing promising innovations like floating platforms.

    11. Transmission Issues

    12. EU Supergrid The supergrid concept provides an opportunity for integrated energy infrastructure for Europe. It brings together two proven technologies: offshore wind energy and High Voltage Direct Current (HVDC) Transmission. These technologies enable the supergrid to provide two distinct functions: 1. It allows countries to trade their energy multilaterally. 2. It creates a vast energy resource which is both sustainable and indigenous to Europe.

    13. Comprehensive Approach to Compatibility The ocean is a highly used public resource with multiple values: New ocean management regimes are being developed; offshore renewable energy is a driver Risk Assessment and adaptive management concepts should be applied. The siting process should reflect renewable energy benefits and costs of other sources; climate change. A Regional Approach: Many natural systems and marine resources are better understood on a regional scale; ocean management frameworks are moving in this direction Data Integration: consistent protocols for resource assessment and monitoring will build a more robust marine information data base and learning across projects.

    14. Integrated Ocean Observation System IOOS

    15. Ocean Management Frameworks Northeast Regional Ocean Council (NROC) Mid-Atlantic Regional Council on the Oceans (MARCO)

    16. Key Activities That Will Advance U.S. Offshore Wind Initiating collaboration between government, universities, and developers to fund research in critical technology, policy, and environmental areas. Developing a web-based information clearinghouse for the U.S. offshore wind industry. Organizing states to consider issues of regional interest in offshore wind development. Coordinating efforts with industry to commission a robust economic analysis of future financing and infrastructure requirements. Convening U.S. and European counterparts to promote learning, information sharing and investment.

    17. In Conclusion.

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