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Experimental investigation of bearing slip in a wind turbine gearbox during a transient grid loss event

机译:暂态电网损失事件期间风力发电机齿轮箱轴承滑移的实验研究

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This work investigates the behaviour of the high-speed stage of a wind turbine gearbox during a transient grid loss event. Dynamometer testing on a full-scale wind turbine nacelle is used. A combination of external and internal gearbox measurements are analysed. Particular focus is on the characterization of the high-speed shaft tapered roller bearing slip behaviour. This slipping behaviour is linked to dynamic events by many researchers and described as a potential bearing failure initiator; however, only limited full-scale dynamic testing is documented. Strain gauge bridges in grooves along the circumference of the outer ring are used to characterize the bearing behaviour in detail. It is shown that during the transient event the high-speed shaft experiences a combined torsional and bending deformation. These unfavourable loading conditions induce roller slip in the bearings during the torque reversals, indicating the potential of the applied load case to go beyond the preload of the tapered roller bearing. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:这项工作研究了风力涡轮机变速箱高速级在瞬态电网损失事件期间的行为。使用在大型风力涡轮机机舱上的测功机测试。分析了外部和内部变速箱的测量结果。特别着重于高速轴圆锥滚子轴承打滑性能的表征。许多研究人员将这种滑移行为与动态事件联系起来,并被描述为潜在的轴承失效引发器。但是,仅记录了有限的全面动态测试。沿外圈圆周的凹槽中的应变仪桥用于详细表征轴承性能。结果表明,在瞬态事件中,高速轴经历了扭转和弯曲变形的综合作用。这些不利的负载条件会在扭矩反转期间导致轴承中的滚子打滑,表明施加的负载情况有可能超过圆锥滚子轴承的预紧力。版权所有(c)2016 John Wiley&Sons,Ltd.

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