2021
DOI: 10.1007/978-3-030-77823-1_7
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Methods and Algorithms for Calculating Nonlinear Oscillations of Rotor Systems

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Cited by 2 publications
(1 citation statement)
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“…Meanwhile, the pulsating amplitude of the closed impeller at the dominant frequency is smaller than that of the other two impellers Furthermore, the rotor vibration stability is less affected by the motor vibration, and more affected by the rotor centering problem between the pump and the motor. Simonovskiy et al (2021) introduced the method of linear and nonlinear parameter identification for vibration mathematical models of centrifugal pumps and turbocharger rotors to ensure vibration reliability of the centrifuge rotor system. As an example of using the proposed methodology, the analysis of forced oscillations and stability of the rotor's rotation of a centrifugal compressor for underground gas storage with 25 MW power is considered.…”
Section: Vibration Characteristicsmentioning
confidence: 99%
“…Meanwhile, the pulsating amplitude of the closed impeller at the dominant frequency is smaller than that of the other two impellers Furthermore, the rotor vibration stability is less affected by the motor vibration, and more affected by the rotor centering problem between the pump and the motor. Simonovskiy et al (2021) introduced the method of linear and nonlinear parameter identification for vibration mathematical models of centrifugal pumps and turbocharger rotors to ensure vibration reliability of the centrifuge rotor system. As an example of using the proposed methodology, the analysis of forced oscillations and stability of the rotor's rotation of a centrifugal compressor for underground gas storage with 25 MW power is considered.…”
Section: Vibration Characteristicsmentioning
confidence: 99%