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DESIGN AND BENEFIT POTENTIALS OF SYNERGISTIC CURRENT AND OFFSHORE WIND (SCOW) SYSTEMS

机译:协同电流和海上风(SCOW)系统的设计和潜在性能

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摘要

Offshore wind, ocean current, and tidal current renewable energy systems, taken together, have global terawatt-scale power potential with zero carbon emissions. "Synergistic Current and Offshore Wind (SCOW) Systems" constitute a paradigm-shifting new class of renewable energy harvesting inventions that simultaneously capture ocean / tidal current energy below the water surface and offshore wind energy above the water surface. Many offshore deployment sites exist worldwide with high power densities below and above the water surface. Optimal implementation of production SCOW Systems could occur at such high-potential locations including the Gulf Stream Current off the Eastern Seaboard of the U.S.A.; the Alaska Current; the Kuroshio Current off the coast of Japan; the Brazil, Agulhas and East Australian Currents; the Antarctic Circumpolar Current; and also at locations with strong tidal currents plus high winds such as sites offshore from Maine, Alaska, Canada, Russia, the United Kingdom and the Philippines amongst others.
机译:海上风能,洋流和潮汐能可再生能源系统加在一起,具有全球性的兆瓦级电力潜力,碳排放量为零。 “协同电流和近海风能(SCOW)系统”构成了范式转移的一类新的可再生能源收集发明,这些发明同时捕获了水面以下的海洋/潮汐能和水面以上的海上风能。世界各地都有许多海上部署站点,它们在水面之下和之上都具有高功率密度。生产SCOW系统的最佳实施可能发生在这样的高潜力地区,包括美国东部沿海的墨西哥湾流;阿拉斯加潮流;日本沿海的黑潮巴西,Agulhas和东澳大利亚洋流;南极绕极电流;以及潮汐强风高的地方,例如缅因州,阿拉斯加,加拿大,俄罗斯,英国和菲律宾等离岸地点。

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