根据 IEC 61400-1 和 ISO 281 确定的风轮机主轴承额定寿命:批判性审查和探索性案例研究

Wind Energy Pub Date : 2023-11-20 DOI:10.1002/we.2883
Jarred Kenworthy, Edward Hart, James Stirling, Adam Stock, Jonathan Keller, Yi Guo, J. Brasseur, Rhys Evans
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引用次数: 0

摘要

本文研究了 IEC 61400-1 和 ISO 281 标准确定的风机主轴承额定寿命。本文对相关轴承寿命理论和风机设计要求进行了严格审查,包括讨论可能存在的缺陷,如轴承疲劳载荷极限的存在(或不存在)以及假设线性损伤累积的有效性。然后进行了详细的探索性案例研究,以确定 1.5 兆瓦风机中两种型号主轴承的额定寿命。额定寿命评估是在不同条件下进行的,包括主轴承温度、风场特性、润滑油粘度和污染程度的各种组合。结果发现,在预期运行条件下,两种型号轴承的额定寿命都远远高于 20 年设计寿命的要求。对于较大的轴承,绝大多数时间的运行载荷都低于或接近轴承疲劳载荷极限。额定寿命值的关键敏感因素是温度和污染。总体而言,本研究结果表明,ISO 281 的额定寿命评估无法解释 1 至 3 兆瓦风机主轴承故障的报告率。建议对 ISO/TS 16281 的额定寿命进行类似分析,并在今后的工作中进一步努力确定主轴承故障的主要根本原因,从而制定出专门针对该部件的新应用标准。还建议调查部分尾流撞击对主轴承额定寿命的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wind turbine main bearing rating lives as determined by IEC 61400‐1 and ISO 281: A critical review and exploratory case study
This paper studies the rating lives of wind turbine main bearings, as determined by the IEC 61400‐1 and ISO 281 standards. A critical review of relevant bearing life theory and turbine design requirements is provided, including discussion on possible shortcomings such as the existence (or not) of the bearing fatigue load limit and the validity of assuming linear damage accumulation. A detailed exploratory case study is then undertaken to determine rating lives for two models of main bearing in a 1.5 MW wind turbine. Rating life assessment is carried out under different conditions, including various combinations of main bearing temperature, wind field characteristics, lubricant viscosity, and contamination levels. Rating lives are found to be sufficiently above the desired 20‐year design life for both bearing models under expected operating conditions. For the larger bearing, operational loads are shown to be below or close to the bearing fatigue load limit a vast majority of the time. Key sensitivities for rating life values are temperature and contamination. Overall, the results of this study suggest that an ISO 281 rating life assessment does not account for reported rates of main bearing failures in 1 to 3 MW wind turbines. It is recommended that a similar analysis be undertaken for ISO/TS 16281 rating lives, along with further efforts to identify principal root causes of main bearing failures in future work, possibly leading to a new application standard specific to this component. It is also recommended that the impacts of partial wake impingement on main bearing rating lives are investigated.
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