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Investigation into offshore wind farm repowering optimization in Hong Kong

机译:香港海上风电场改造优化研究

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With the growing prosperity of the offshore wind energy market and the approaching end of the lifetime of the first-generation offshore wind farms, the high decommissioning cost has attracted increasing attention all over the world. To decrease this cost, the spotential repowering strategies are applied into the wind farm optimization and investigated in this study. In the repowering optimization strategy, the wind turbine foundations are not dismantled immediately after their service lifetime, and the lifecycle of them is extended to two generations' service time. The costs of removing the first foundations and installing the second foundations are saved. With the layout optimization method, the wind loss caused by wake effect can be decreased, which improve the energy output of the wind farm in the whole lifetime. Levelised cost of energy (LCoE) is set as the criterion to evaluate the wind farm layout. Both aligned and optimized layouts are analyzed in this study. A case study in Sha Chau Island seawater area in Hong Kong is then discussed. The results reveal that Hong Kong has many advantages to exploit offshore wind power and the repowering optimization layout is practical for cost-saving. According to this study, the LCoE of an offshore wind power farm in Sha Chau Island seawater area could be decreased to 0.9130 HK$/kWh.
机译:随着海上风能市场的繁荣发展和第一代海上风电场寿命的临近,高昂的退役费用已引起全世界越来越多的关注。为了降低该成本,将潜在的供电策略应用于风电场优化中并进行了研究。在重新供电优化策略中,风力涡轮机基础在使用寿命后不会立即拆除,并且其使用寿命会延长到两代的使用寿命。节省了拆卸第一个基座和安装第二个基座的成本。使用布局优化方法,可以减少由尾流效应引起的风损失,从而提高风电场在整个生命周期内的能量输出。能源成本水平(LCoE)被设置为评估风电场布局的标准。这项研究分析了对齐和优化的布局。然后讨论了香港沙洲岛海水区的一个案例研究。结果表明,香港在利用海上风力发电方面具有许多优势,而重新供电优化布局对于节省成本是切实可行的。根据这项研究,沙洲岛海水域的一个海上风电场的最低能效成本可能降至0.9130港币/千瓦时。

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