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Nonlinear dynamic analysis of a complex dual rotor-bearing system based on a novel model reduction method

机译:基于新型模型归约法的复杂双转子轴承系统非线性动力学分析

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In this paper, a dynamic model of a complex dual rotor-bearing system of an aero-engine is established based on the finite element method with three types of beam elements (rigid disc, cylindrical beam element and conical beam element), as well as taking into account the nonlinearities of all of the supporting rolling element bearings. To rapidly and accurately analyze dynamic behaviors of the complex dual rotor-bearing system, a two-level model order reduction (MOR) method is proposed by combining component mode synthesis (CMS) method and proper orthogonal decomposition (POD) technique. The first-level reduced-order model (ROM) of the dual rotors is obtained by CMS method with a high precision for the original system. Then, the POD method is applied to second-level model order reduction to further decrease the degrees of freedom (DOFs) of first-level ROM. Second-level ROM with mode expansion and direct second-level ROM are obtained, and the nonlinear displacement responses of the two ROMs are compared with the first-level ROM. The numerical results demonstrate that the proposed method has a higher computational efficiency and accuracy in terms of mode expansion than the direct model reduction by using POD method. In addition, the nonlinear vibration responses of the dual rotor-bearing system are studied by this second-level ROM in the case of different clearances of the inter-shaft bearing. The results indicate that the dynamic characteristics of the dual rotor-bearing system are very complicated for a large clearance. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文基于有限元方法,建立了具有三种类型梁单元(刚性圆盘,圆柱梁单元和圆锥形梁单元)以及有限元方法的航空发动机复杂双转子轴承系统的动力学模型。考虑到所有支撑滚动轴承的非线性。为了快速,准确地分析复杂的双转子轴承系统的动力学行为,提出了一种将组件模式合成(CMS)方法和适当的正交分解(POD)技术相结合的两级模型降阶(MOR)方法。双转子的一级降阶模型(ROM)是通过CMS方法以原始系统的高精度获得的。然后,将POD方法应用于第二级模型降阶,以进一步降低第一级ROM的自由度(DOF)。获得了具有模式扩展功能的第二级ROM和直接第二级ROM,并将这两个ROM的非线性位移响应与第一级ROM进行了比较。数值结果表明,与使用POD方法进行直接模型约简相比,该方法在模式扩展方面具有更高的计算效率和准确性。此外,在轴间轴承间隙不同的情况下,通过该第二级ROM研究了双转子轴承系统的非线性振动响应。结果表明,对于大间隙,双转子轴承系统的动力学特性非常复杂。 (C)2019 Elsevier Inc.保留所有权利。

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