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Techno-economic analysis of a hydraulic transmission for floating offshore wind turbines

机译:浮动近海风力涡轮机液压传动技术经济分析

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Mechanical gearboxes have one of the highest failure rates of wind turbine components while being one of the most expensive parts to replace or service. They are easily fatigued and have a low power rating relative to their size and mass. In this article, hydraulic transmissions are proposed as an alternative to mechanical drive trains and their feasibility has been established, particularly for offshore wind turbine applications. Here, we provide an in-depth analysis regarding the techno-economic benefits of replacing the mechanical gearbox with a hydraulic transmission in an offshore system. Our analysis shows that hydraulic transmissions are particularly beneficial for offshore applications: (i) relocating 35.3% of the nacelle mass to the base, thus moving the center of gravity toward the ground level, (ii) diminishing operation and maintenance costs, and (iii) replacing now-redundant power electronics. These three benefits contribute to saving between 3.92 and 18.8% on the Levelized Cost of Electricity for average cost offshore wind turbines. (C) 2020 Elsevier Ltd. All rights reserved.
机译:机械齿轮箱具有风力涡轮机部件的最高故障率,同时是更换或服务的最昂贵的零件之一。它们很容易疲劳,并且相对于其尺寸和质量具有低功率等级。在本文中,提出了液压传动作为机械驱动列车的替代方法,并且已经建立了它们的可行性,特别是对于海上风力涡轮机应用。在这里,我们对在海上系统中用液压传输更换机械变速箱的技术经济效益,提供了深入的分析。我们的分析表明,液压传输对海上应用特别有益:(i)将35.3%的机舱质量迁移到基座,从而使重心向地面移动,(ii)递减操作和维护成本,(III) )更换现在冗余的电力电子设备。这三个效益有助于节省3.92至18.8%,达到近海风力涡轮机的平均电力的均衡费用。 (c)2020 elestvier有限公司保留所有权利。

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