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A review of offshore wind turbine nacelle: Technical challenges, and research and developmental trends

机译:海上风力涡轮机机舱综述:技术挑战,研究和发展趋势

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摘要

The turbine nacelle with traditional wind power generation system is heavy, especially in offshore applications due to the large mass of the power frequency step-up-transformer operated at 50 or 60 Hz, and copper conductor generator. For example, the weight and volume of a 0.69/33 kV 2.6 MVA transformer are typically in the range of 6-81 and 5-9 m~3, respectively. The weight for a 10 MW direct drive permanent magnet generator is about 3001. These penalties significantly increase the tower construction, and turbine installation and maintenance costs. The tower cost represents 26% of the total component cost of the turbine and on average about 20% of the capital costs are associated with installation. Typical maintenance cost of an offshore wind turbine is about 2.3 cents/kWh, which is 20% higher than that of an onshore based turbine. As alternative approaches to achieve a compact and lightweight offshore wind turbine nacelle, different concepts have been proposed in recent years, such as step-up-transformer-less system, medium-frequency (in the range of a few kHz to MHz) power transformer-based system, multilevel and modular matrix converter-based system and superconducting generator-based system. This paper aims to review the technical challenges, current research and developmental trends, and possible future directions of the research to reduce the weight and volume of the nacelle. In addition, a comprehensive review of traditional wind power generation technologies is conducted in this article as well.
机译:具有传统风力发电系统的涡轮机机舱很重,特别是在海上应用中,这是因为以50或60 Hz运行的大量的工频升压变压器以及铜导体发电机。例如,0.69 / 33 kV 2.6 MVA变压器的重量和体积通常分别在6-81和5-9 m〜3的范围内。 10 MW直驱永磁发电机的重量约为3001。这些处罚会显着增加塔架的结构以及涡轮机的安装和维护成本。塔架成本占涡轮机总成本的26%,平均约20%的资本成本与安装相关。海上风力涡轮机的典型维护成本约为2.3美分/ kWh,比陆上风力涡轮机的维护成本高20%。作为实现紧凑,轻便的海上风力涡轮机机舱的替代方法,近年来提出了不同的概念,例如无升压变压器系统,中频(几kHz至MHz范围内)的电力变压器基于系统,基于多级和模块化矩阵转换器的系统以及基于超导发电机的系统。本文旨在回顾技术挑战,当前的研究和发展趋势以及减轻机舱重量和体积的研究可能的未来方向。此外,本文还对传统的风力发电技术进行了全面回顾。

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