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Energy Yield Assessment from Ocean Currents in the Insular Shelf of Cozumel Island

机译:考祖梅岛岛架上海流的能量产量评估

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Marine renewables represent a promising and innovative alternative source for satisfying the energy demands of growing populations while reducing the consumption of fossil fuels. Most technological advancements and energy yield assessments have focused on promoting the use of kinetic energy from tidal streams with flow velocities higher than 2.0 m s ?1 . However, slower-moving flows from ocean currents are recently explored due to their nearly continuous and unidirectional seasonal flows. In this study, the potential of the Yucatan Current was analysed at nearshore sites over the insular shelf of Cozumel Island in the Mexican Caribbean. Field measurements were undertaken using a vessel-mounted Acoustic Doppler Current Profiler (ADCP) to analyse the spatial distribution of flow velocities, along with Conductivity-temperature-depth (CTD) profiles as well as data gathering of bathymetry and water elevations. Northward directed flow velocities were identified, with increasing velocities just before the end of the strait of the Cozumel Channel, where average velocities in the region of 0.88–1.04 m s ?1 were recorded. An estimation of power delivery using horizontal axis turbines was undertaken with Blade Element Momentum theory. It was estimated that nearly 3.2 MW could be supplied to Cozumel Island, amounting to about 10% of its electricity consumption.
机译:海洋可再生能源是一种有前途的创新替代能源,可满足不断增长的人口的能源需求,同时减少化石燃料的消耗。大多数技术进步和能量产量评估都集中于促进使用潮汐流中流动速度高于2.0 m s?1的动能。然而,由于洋流几乎是连续的和单向的季节性流,最近对洋流的缓慢移动进行了研究。在这项研究中,在墨西哥加勒比海的科苏梅尔岛的岛架上的近岸站点对尤卡坦海流的潜力进行了分析。使用安装在船上的声学多普勒电流剖面仪(ADCP)进行现场测量,以分析流速的空间分布,以及电导率-温度-深度(CTD)剖面以及水深和水高的数据收集。确定了向北流动的速度,并且在科苏梅尔海峡海峡尽头之前,速度有所增加,在那里记录的平均速度在0.88–1.04 m s?1范围内。使用叶片单元动量理论对使用水平轴涡轮机的功率传输进行了估算。据估计,将向科苏梅尔岛提供近3.2兆瓦的电力,约占其用电量的10%。

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