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首页> 外文期刊>International journal of structural integrity >Computer-aided engineering analysis of tooth-bending fatigue-based failure in horizontal-axis wind-turbine gearboxes
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Computer-aided engineering analysis of tooth-bending fatigue-based failure in horizontal-axis wind-turbine gearboxes

机译:水平轴风力涡轮机变速箱基于弯矩疲劳的计算机辅助工程分析

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Purpose - Wind energy is one of the most promising and the fastest growing alternative-energy production technologies, which have been developed in response to stricter environmental regulations, the depletion of fossil-fuel reserves, and the world's ever-growing energy needs. This form of alternative energy is projected to provide 20 percent of the US energy needs by 2030. For economic reasons, wind turbines (articulated structures that convert wind energy into electrical energy) are expected to operate, with only regular maintenance, for at least 20 years. However, some key wind turbine components (especially the gearbox) tend to wear down, malfunction and fail in a significantly shorter time, often three to five years after installation, causing an increase in the wind-energy cost and in the cost of ownership of the wind turbine. Clearly, to overcome this problem, a significant increase in long-term gearbox reliability needs to be achieved. Design/methodology/approach - While purely empirical efforts aimed at identifying shortcomings in the current design of the gearboxes are of critical importance, the present work demonstrates that the use of advanced computational engineering analyses, like the finite-element stress analysis and a post-processing fatigue-life assessment analysis, can also be highly beneficial. Findings - The results obtained in the present work clearly revealed how a variety of normal operating and extreme wind-loading conditions can influence the service-life of a wind-turbine gearbox in the case when the service-life is controlled by the gear-tooth bending-fatigue. Originality/value - The present work attempts to make a contribution to the resolution of an important problem related to premature-failure and inferior reliability of wind-turbine gearboxes.
机译:目的-风能是最有希望和增长最快的替代能源生产技术之一,其开发是为了响应更严格的环境法规,化石燃料储备的枯竭以及世界不断增长的能源需求。预计到2030年,这种形式的替代能源将满足美国20%的能源需求。出于经济原因,风力涡轮机(将风能转换为电能的铰接式结构)仅需定期维护即可运行至少20年。年份。但是,某些关键的风力涡轮机组件(尤其是齿轮箱)往往会在安装后的三到五年内,在很短的时间内出现磨损,故障和故障,从而导致风能成本和拥有成本的增加。风力涡轮机。显然,为了克服这个问题,需要实现长期变速箱可靠性的显着提高。设计/方法/方法-尽管纯粹的经验性工作旨在识别齿轮箱当前设计中的缺陷至关重要,但目前的工作表明,先进的计算工程分析方法的使用,例如有限元应力分析和后处理,处理疲劳寿命评估分析,也可能非常有益。发现-在本工作中获得的结果清楚地表明,在正常工作和极端风载荷条件下,当齿轮寿命控制齿轮箱的使用寿命时,如何影响风力涡轮机齿轮箱的使用寿命弯曲疲劳。原创性/价值-目前的工作试图为解决与风力涡轮机齿轮箱过早失效和可靠性较差有关的重要问题做出贡献。

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