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首页> 外文期刊>Tribology Transactions >Monitoring of Wind Turbine Gearbox Condition through Oil and Wear Debris Analysis: A Full-Scale Testing Perspective
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Monitoring of Wind Turbine Gearbox Condition through Oil and Wear Debris Analysis: A Full-Scale Testing Perspective

机译:通过机油和磨损碎片分析监控风力涡轮机变速箱状态:全面测试视角

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摘要

Despite the wind industry's dramatic development during the past decade, it is still challenged by premature turbine subsystem/component failures, especially for turbines rated above 1 MW. Because a crane is needed for each replacement, gearboxes have been a focal point for improvement in reliability and availability. Condition monitoring (CM) is a technique that can help improve these factors, leading to reduced turbine operation and maintenance costs and, subsequently, lower cost of energy for wind power. Although technical benefits of CM for the wind industry are normally recognized, there is a lack of published information on the advantages and limitations of each CM technique confirmed by objective data from full-scale tests. This article presents first-hand oil and wear debris analysis results obtained through tests that were based on full-scale wind turbine gearboxes rated at 750 kW. The tests were conducted at the 2.5-MW dynamometer test facility at the National Wind Technology Center at the National Renewable Energy Laboratory. The gearboxes were tested in three conditions: run-in, healthy, and damaged. The investigated CM techniques include real-time oil condition and wear debris monitoring, both inline and online sensors, and offline oil sample and wear debris analysis, both onsite and offsite laboratories. The reported results and observations help increase wind industry awareness of the benefits and limitations of oil and debris analysis technologies and highlight the challenges in these technologies and other tribological fields for the Society of Tribologists and Lubrication Engineers and other organizations to help address, leading to extended gearbox service life.
机译:尽管在过去十年中风电行业取得了长足发展,但风电子系统/组件故障过早仍给风电挑战,特别是对于额定功率超过1兆瓦的风轮机。因为每次更换都需要使用起重机,所以变速箱一直是提高可靠性和可用性的重点。状态监测(CM)是一种可以帮助改善这些因素的技术,从而降低了涡轮机的运行和维护成本,进而降低了风能的能源成本。尽管CM在风电行业的技术优势通常是公认的,但缺乏关于已通过全面测试的客观数据证实的每种CM技术的优点和局限性的公开信息。本文介绍了通过基于额定功率为750 kW的全尺寸风力涡轮机变速箱的测试获得的第一手油和磨损碎片分析结果。测试是在国家可再生能源实验室的国家风力技术中心的2.5兆瓦测功机测试设备上进行的。在三个条件下对齿轮箱进行了测试:磨合,健康和损坏。所研究的CM技术包括在线和在线传感器的实时机油状况和磨损碎片监控,以及现场和异地实验室的离线油样和磨损碎片分析。报告的结果和观察结果有助于提高风能行业对石油和碎屑分析技术的好处和局限性的认识,并向摩擦学家和润滑工程师协会及其他组织强调这些技术和其他摩擦学领域中的挑战,以帮助解决,并导致变速箱使用寿命。

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