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Evaluation of damage mechanics of industrial wind turbine gearboxes

机译:工业风力涡轮机齿轮箱损伤力学评价

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摘要

In recent years, global wind power capacity has grown steadily at an annual rate of around 20%. This has led to wind energy becoming the most important renewable energy source on a global scale, with the total installed capacity reaching 430 GW. However, the strong growth of offshore wind power has been somewhat inhibited due to a number of operational challenges that are yet to be addressed in full. The most important of these challenges appears to be the reliability of the wind turbine gearbox (WTG). WTGs are currently unable to survive their anticipated design lifetime of 20-25 years. Most of them hardly reach a useful operational lifetime of more than seven years without serious refurbishment or replacement and, for offshore wind turbines, failures have been reported as early as within one to two years. In this paper, the damage mechanisms influencing WTGs supported by finite element analysis have been considered and presented in the context of condition monitoring diagnosis and prognosis.
机译:近年来,全球风力发电能力稳步增长约20%。这导致风能成为全球范围内最重要的可再生能源,总装机容量达到430 GW。然而,由于许多运营挑战,海上风电的强劲增长已经存在些尚未完全解决的许多业务挑战。这些挑战中最重要的似乎是风力涡轮机齿轮箱(WTG)的可靠性。目前无法在20-25年的预期设计寿命期间无法存活。大多数人几乎没有达到7年以上的有用运营寿命,而无需严重翻新或更换,而且对于海上风力涡轮机,已在一到两年内报告失败。本文在病症监测诊断和预后,已经考虑并介绍了影响有限元分析支持的WTGS的损伤机制。

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