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Offshore Wind Turbine Sub-Assembly Failure Rates Through Time

机译:海上风力涡轮机子装配故障率通过时间

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O&M costs can make up to 30% of the lifetime CoE of an offshore wind farm [1]. As a means of reducing this cost operators and O&M providers need a greater understanding of what is driving that O&M cost. Failure rates of wind turbines and their components are a key driver of O&M costs. Past papers have modelled O&M costs assuming a fixed average failure rate for wind turbine subsystems [2]. This work aims to determine if it is accurate to assume a fixed failure rate or if a failure rate distribution through time can be provided to allow for more accurate O&M cost modelling and in turn CoE modelling. This paper shows the results of an analysis of offshore wind turbine annual failure rates over an 8 year period. The analysis is based on around 350 modern multi MW offshore turbines located in 5-10 offshore wind farms throughout Europe. The literature review for this paper indicated that a constant average failure rate should only be used if the shape parameter of the failure distribution is around 1. However results from the failure rate analysis in this paper have shown that in many cases a constant failure rate is not correct for O&M Modelling.
机译:O&M成本可以占海上风电场的终身COE的30%[1]。作为减少该成本运营商和O&M提供商的手段,需要更加了解驱动O&M成本的原因。风力涡轮机及其组件的故障率是O&M成本的关键驱动因素。过去的纸张具有模型的O&M成本,假设风力涡轮机子系统的固定平均故障率[2]。这项工作旨在确定是否准确地假设固定故障率或者可以提供通过时间的故障率分布,以允许更准确的O&M成本建模和转向COE建模。本文显示了8年期间海上风力涡轮机年失效率的分析结果。分析基于欧洲5-10个海上风电场的大约350个现代Multi MW离岸涡轮机。本文的文献综述表明,只有在故障分布的形状参数左右的情况下只能使用恒定的平均故障率。然而,本文故障率分析的结果表明,在许多情况下,恒定的故障率是对O&M造型不正确。

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