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首页> 外文期刊>International Journal of Rotating Machinery >Global Sensitivity Analysis of High Speed Shaft Subsystem of a Wind Turbine Drive Train
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Global Sensitivity Analysis of High Speed Shaft Subsystem of a Wind Turbine Drive Train

机译:风力涡轮机传动系高速轴子系统的全局敏感性分析

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摘要

The wind turbine dynamics are complex and critical area of study for the wind industry. Quantification of the effective factors to wind turbine performance is valuable for making improvements to both power performance and turbine health. In this paper, the global sensitivity analysis of validated mathematical model for high speed shaft drive train test rig has been developed in order to evaluate the contribution of systems input parameters to the specified objective functions. The drive train in this study consists of a 3-phase induction motor, flexible shafts, shafts’ coupling, bearing housing, and disk with an eccentric mass. The governing equations were derived by using the Lagrangian formalism and were solved numerically by Newmark method. The variance based global sensitivity indices are introduced to evaluate the contribution of input structural parameters correlated to the objective functions. The conclusion from the current research provides informative beneficial data in terms of design and optimization of a drive train setup and also can provide better understanding of wind turbine drive train system dynamics with respect to different structural parameters, ultimately designing more efficient drive trains. Finally, the proposed global sensitivity analysis (GSA) methodology demonstrates the detectability of faults in different components.
机译:风力涡轮机动态是风力行业的复杂和关键的研究领域。风力涡轮机性能的有效因素的量化对于改善功率性能和涡轮机健康是有价值的。在本文中,开发了高速轴传动系试验台的验证数学模型的全局敏感性分析,以评估系统输入参数对指定目标函数的贡献。该研究中的传动系包括三相感应电动机,柔性轴,轴的联轴器,轴承壳体和带有偏心质量的盘。通过使用拉格朗日形式主义来源的控制方程,并通过纽马克方法进行数字解决。引入了基于差异的全局敏感指标来评估输入结构参数与目标函数相关的贡献。目前研究的结论提供了在传动系统设置的设计和优化方面提供了丰富的有益数据,并且还可以更好地了解有关不同结构参数的风力涡轮机传动系统动态,最终设计更有效的驱动列车。最后,所提出的全局敏感性分析(GSA)方法表明了不同组件中的故障的可检测性。

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