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Modal synthesis method of lateral vibration analysis for rotor-bearing system

机译:转子轴承系统横向振动分析的模态综合方法

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摘要

Rigid coupling and flexible connection made up of elastic coupling units are widely applied to rotor-bearing system with multi-branched shafting system. This paper proposes a modal synthesis method of lateral vibration analysis for such kind of rotor-bearing system. When the proposed approach is developed, the elastic coupling unit is defined as "flexible substructure" which is treated individually and the other parts are partitioned into some substructures which are analyzed by finite element method. The lower-frequency normal modes of the substructures are retained; whereas the higher-frequency normal modes are neglected by a frequency truncation criterion and the residual flexibility of those omitted modes is considered. The lower-frequency normal modes and residual flexibility are considered to be the assumed modes of Rayleigh―Ritz analysis of whole structure. The approach to the treatment of higher-frequency modes leads to a great reduction in the calculation time and a significant improvement in the efficiency of modal synthesis. Examples show that the proposed approach is very effective for the vibration analysis of rotor-bearing system with multi-branched shafting system and the results derived from this approach are in a good agreement with those from transfer matrix method.
机译:由弹性联轴器单元组成的刚性联轴器和柔性连接被广泛应用于带有多分支轴系的转子轴承系统。针对这种转子-轴承系统,提出了一种侧向振动分析的模态综合方法。当提出的方法被开发时,弹性耦合单元被定义为“柔性子结构”,该子结构被单独处理,其他部分被划分为一些子结构,并通过有限元方法进行分析。子结构的低频正常模式得以保留;而高频截断准则忽略了高频正常模式,并考虑了那些省略模式的剩余灵活性。低频正态模态和剩余挠度被认为是整个结构的瑞利-里兹分析的假定模态。处理高频模式的方法大大减少了计算时间,并显着提高了模态合成的效率。算例表明,该方法对于多分支轴系转子轴承系统的振动分析非常有效,其结果与传递矩阵法的结果吻合良好。

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