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首页> 外文期刊>Journal of Sound and Vibration >Simultaneous identification of unbalance and shaft bow in a two-disk rotor based on correlation analysis and the SEREP model order reduction method
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Simultaneous identification of unbalance and shaft bow in a two-disk rotor based on correlation analysis and the SEREP model order reduction method

机译:基于相关性分析的双盘转子在两个盘转子中的不平衡和轴弓的同时识别和SEREP模型顺序减少方法

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摘要

This paper focuses on a theoretical and experimental identification of two of the most common faults that occur in rotating machines, which exhibit similar problems: unbalance and residual shaft bow. Numerous studies deal with shaft bow, but only a few involve rotors containing many degrees of freedom and the simultaneous occurrence of these two faults. The identification procedure proposed here belongs to the techniques based on the mathematical model of rotors and faults. Finite elements were used to model the rotor, and the faults were identified using an approach based on correlation analysis, which involves only the rotor's responses in the time domain. The System Equivalent Reduction Expansion Process (SEREP) model reduction technique was employed in order to use only the disks' responses and avoid high computational costs. The identification equation derives from the Lyapunov matrix equation of the reduced system model and the fault parameters are identified by least-squares fitting, considering both magnitude and location. Since the shaft bow is considered constant, the faults were identified in two steps, which consider variations in the unbalance parameters: 1) theoretically, considering ten different cases of unbalance and subjected to the same shaft bow, and 2) experimentally, in which the same ten different cases are validated using experimental data from a laboratory test rig. The proposed procedure proved consistent in identifying two faults that occur simultaneously and exhibit similar symptoms.
机译:本文重点介绍了旋转机器中发生的两种最常见故障的理论和实验识别,其表现出类似的问题:不平衡和剩余轴弓。许多研究处理轴弓,但只有几个涉及含有多种自由度的转子和这两个故障的同时发生。这里提出的识别程序属于基于转子和故障的数学模型的技术。有限元用于模拟转子,并且使用基于相关分析的方法来识别故障,这涉及在时域中的转子的响应。使用系统等效减少扩展过程(SEREP)模型减少技术,以仅使用磁盘的响应并避免高计算成本。识别方程来自降低系统模型的Lyapunov矩阵方程,并且考虑到幅度和位置,通过最小二乘拟合识别故障参数。由于轴弓被认为是恒定的,因此在理论上考虑不平衡参数的两个步骤,这考虑了不平衡的不平衡参数的变化,并且考虑到了十种不同的不平衡情况并经受相同的轴弓和2)实验,其中使用来自实验室试验台的实验数据验证相同的十种不同的病例。所提出的程序证明,在鉴定同时发生的两个故障并表现出类似的症状的情况一致。

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