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Numerical Investigation on the Gravity Response of a Two-Pole Generator Rotor System with Interval Uncertainties

机译:间隔不确定性的双极发电机转子系统的重力响应的数值研究

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摘要

Asymmetric rotor systems widely exist in commercial plants. In the previous studies about asymmetric rotor systems, parameters such as material properties and boundary conditions are deterministic. To obtain a deep understanding of the dynamics of asymmetric rotor systems, a generator rotor system considering uncertain factors is studied in this paper. The equations of motion of the three-dimensional finite element model are solved in the rotating frame. The component mode synthesis is used to reduce the degrees of freedom. By employing the Chebyshev interval method (CIM), the uncertain gravity responses of the generator rotor system are investigated. The influences of the uncertainties in the bearing’s properties and the rotor’s material properties on the gravity response are studied in cases with a single uncertainty and double uncertainties. The accuracy and the efficiency of CIM are validated by comparing with the results of the scanning method. The results show that uncertainties have remarkable influences on the gravity response, and that these influences are different from each other. The proposed method and the results can provide guidance to the design and optimization of the rotary machinery.
机译:商业设备中广泛存在的不对称转子系统。在关于非对称转子系统的先前研究中,诸如材料特性和边界条件的参数是确定性的。为了深入了解不对称转子系统的动态,在本文中研究了考虑不确定因素的发电机转子系统。三维有限元模型的运动方程在旋转框架中求解。组件模式合成用于减少自由度。通过采用Chebyshev间隔方法(CIM),研究了发电机转子系统的不确定重力响应。在具有单一不确定性和双重不确定性的情况下,研究了在轴承性能和转子材料特性对重力响应的影响的影响。通过与扫描方法的结果进行比较验证CIM的准确性和效率。结果表明,不确定性对重力响应具有显着影响,并且这些影响彼此不同。所提出的方法和结果可以为旋转机械的设计和优化提供指导。

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