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An integrated approach for wind turbine gearbox fatigue life prediction considering instantaneously varying load conditions

机译:考虑瞬时变化负载条件的风力发电机齿轮箱疲劳寿命预测的集成方法

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Wind power is a significant clean energy source. Operation & maintenance (O&M) costs account for about 25% of the cost of wind power, and it is critical to improve the reliability of wind power generators to reduce the overall cost and increase wind power competitiveness comparing to other power sources. Wind turbines are subject to instantaneously varying load due to wind turbulence, which challenges the prognostic study for predicting equipment future health conditions and remaining useful lives. With existing prognostics methods, the average constant load is typically used to approximate the varying external load. In this paper, an integrated varying-load approach is proposed for predicting wind turbine gearbox remaining useful life by specifically considering instantaneously varying external load, which is more realistic. Fatigue crack damage is focused on. The method integrates gear physical models and available health condition data, and the distribution of uncertain material parameter modeled in crack degradation process is updated via Bayesian inference once new health condition data become available. Examples are provided to demonstrate the effectiveness of the proposed varying-load approach. A comparative study is conducted between the proposed approach and existing constant-load approximation method, and the results show that the proposed varying-load approach can provide more accurate prediction. (C) 2018 Elsevier Ltd. All rights reserved.
机译:风力是一种重要的清洁能源。运营和维护(O&M)成本约占风电成本的25%,与其他电源相比,提高风电发电机的可靠性,降低总体成本并提高风电竞争力至关重要。风力涡轮机会由于风力湍流而使负载承受瞬时变化的负荷,这对预测设备未来的健康状况和剩余使用寿命的预后研究提出了挑战。使用现有的预测方法,通常使用平均恒定负载来近似变化的外部负载。在本文中,提出了一种综合的变负荷方法,通过专门考虑瞬时变化的外部负荷来预测风力涡轮机变速箱的剩余使用寿命,这更为现实。疲劳裂纹损坏是重点。该方法整合了齿轮物理模型和可用的健康状况数据,一旦获得了新的健康状况数据,就会通过贝叶斯推理更新在裂纹退化过程中建模的不确定材料参数的分布。提供了一些示例来证明所提出的变负荷方法的有效性。将该方法与现有的恒定载荷近似方法进行了比较研究,结果表明,该方法可以提供更准确的预测。 (C)2018 Elsevier Ltd.保留所有权利。

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