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COMPREHENSIVE RENEWABLE ENERGY FEASIBILITY STUDY Sitka

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COMPREHENSIVE RENEWABLE ENERGY FEASIBILITY STUDY Sitka ( comprehensive-renewable-energy-feasibility-study-sitka )

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Local Examples The there are significant opportunities for wave energy systems surrounding Baranof Island, but none have been implemented or are planned for the future. Assessment/ Keys to Success The Department of Energy has established criteria for establishing criteria to create a strategy for successful implementation of ocean renewable energy technology. These strategies include the following. Ocean energy Technology Characterization Program: • Assess and down select technology options and validate resource potential Collaborate with MMS to Define and Streamline Permitting Process: • Advanced notice for leasing and rights of way for OCS • Clarify FERC license requirements for prototypes and demonstration projects • Establish sliding scale for ocean technology deployment on a region by region basis • Develop an intuitional archive fro applicable environmental permitting documents Educate Federal and State Regulators: • Address state and federal permitting requirements • Document environmental and technology risks Consider Establishing an Ocean renewable Energy Testing Facility Based on technology Assessment: • Validate technology selections and assess environmental impacts Marine Renewable Energy Technology Maturity Path (NREL, 2008) Marine energy is at an early stage of development, and as of this writing, no company has established a fully commercialized system. The current state of this industry can be compared to the early stages of the wind energy industry in that many concepts have been proposed with a wide variety of methods for energy capture and conversion yet with little technology convergence. This technological diversity can be attributed to the nascent state of the industry, which does not have a basis for evaluating different concepts, the standards for design guidance, or the analytical tools for design. Nevertheless, dozens of companies are trying to deploy technology around the world. Recent studies show that success appears more likely when a multi‐step progression of development from small‐scale model testing in laboratory tanks to open ocean testing is followed. Although a few companies have progressed to single full‐scale ocean testing, none of the designs have been adopted by developers and financiers for mass production. The lessons learned from wind energy’s recent commercial success tell us that, even with commercial adoption, the maturity of the industry will require substantial commercial deployment and many years of operating experience before any device can be considered mature. (The wind energy industry deployed its first 1000‐MW in California between 1981 and 1985, with over 90,000‐MW installed in 2008) To encourage this same level of deployment, aggressive economic incentives will likely be needed; the modest production tax incentives that motivate wind energy deployment today are not likely to work for less mature marine energy systems. Marine energy systems need incentives that will encourage risk and innovation, as well as energy production at this early stage. In addition, regulatory agencies will need to modify the regulations developed for other industries such as hydroelectric dams and oil platforms, to fit the more benign, modular, deployment paradigm of marine renewable.

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