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Some Environmental Considerations of Electrical Power Generation from Ocean Currents in the Straits of Florida

机译:佛罗里达海峡洋流发电的一些环境考虑

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Ocean currents contain a remarkable amount of kinetic energy and have potential worldwide capability. Initial tests to harness current power focus on the Straits of Florida where the Florida Current has a total flow capacity of about 30 x 10~6 m~3 s~(-1). Generation of clean electricity from ocean currents off southeast Florida is based on a power extractor comprised by open-center turbine technology. This innovative turbine provides safe passage for fish and other aquatic species. The water-column array of energy production units (EPUs) will have a 350 km~2 footprint, based on a 600 m (10 rotor diameters) downstream separation distance between EPUs with a lateral separation of 400 m. Water depths for the EPU field are in the range of 100 to 500 m. With such a large area of water column and benthic habitat utilized, environmental concerns must be overcome, including routing of transmission lines to shore. Risks and vulnerabilities of the proposed ocean current generated electricity include failure of individual EPUs and damage to sensitive coastal marine environments during installation.
机译:洋流包含大量动能,具有潜在的全球性能力。利用电流功率的最初测试集中在佛罗里达海峡,佛罗里达海流的总流量约为30 x 10〜6 m〜3 s〜(-1)。佛罗里达东南部海流产生的清洁电力基于开放式涡轮技术构成的动力提取器。这种创新的涡轮机为鱼类和其他水生物种提供了安全通道。基于EPU之间的下游600 m(转子直径为10)的间隔距离(横向间隔为400 m),能量产生单元(EPU)的水柱阵列将具有350 km〜2的占地面积。 EPU场的水深在100至500 m的范围内。利用如此大面积的水柱和底栖生境,必须解决环境问题,包括将输电线铺设到海岸。拟议海流发电的风险和脆弱性包括单个EPU的故障以及安装期间对敏感的沿海海洋环境的破坏。

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