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GEAR CONTACT FATIGUE RELIABILITY ANALYSIS FOR WIND TURBINES UNDER STOCHASTIC DYNAMIC CONDITIONS CONSIDERING INSPECTION AND REPAIR

机译:考虑检查和修理的随机动力条件下风轮机的齿轮接触疲劳可靠性分析

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Reliability is one of the most important features of the wind turbine gearbox, especially in offshore wind turbines (OWTs). This paper describes a general way to perform gear contact fatigue reliability analysis for wind turbines considering inspection and repair. A simplified predictive surface pitting model for estimating gear fatigue lives is applied to establish the 'so-called' limit stated functions. The National Renewable Energy Laboratory (NREL)'s 750kW land-based wind turbine is used to perform time domain simulations considering different wind speeds that the turbine will experience, whose occurrence frequencies are described by a generalized gamma distribution. The time series of the torques in the main shaft are obtained from the global dynamic response analysis of the wind turbine. The time series of the gear contact forces are obtained from the dynamic analysis of the gearbox through multi-body simulation. The 2-parameter Weibull distribution is used to fit the long-term probability distribution of the gear tooth contact pressures. The reliability analysis is based on fracture mechanics (FM) analysis of crack growth. Finally the sensitivity of the reliability index and failure probability on initial crack size, critical crack size, detectable crack size, crack size after repair, material property and environmental loads is estimated considering the effect of inspection.
机译:可靠性是风力涡轮机变速箱最重要的功能之一,尤其是在海上风力涡轮机(OWT)中。本文介绍了一种在进行检查和维修的情况下对风力涡轮机进行齿轮接触疲劳可靠性分析的一般方法。用于估计齿轮疲劳寿命的简化预测性表面点蚀模型可用于建立“所谓的”极限规定功能。国家可再生能源实验室(NREL)的750kW陆基风力涡轮机用于进行时域模拟,其中考虑了涡轮机将经历的不同风速,其出现频率由广义伽马分布来描述。主轴中扭矩的时间序列是从风力涡轮机的全局动态响应分析中获得的。齿轮接触力的时间序列是通过多体仿真从齿轮箱的动力学分析获得的。 2参数威布尔分布用于拟合齿轮齿接触压力的长期概率分布。可靠性分析基于裂纹扩展的断裂力学(FM)分析。最后,结合检查的影响,估算了可靠性指标和失效概率对初始裂纹尺寸,临界裂纹尺寸,可检测裂纹尺寸,修复后裂纹尺寸,材料性能和环境负荷的敏感性。

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    《》|2014年|V04AT02A060.1-V04AT02A060.11|共11页
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