dc.creatorAraque De Los R?os, ?scar Javier
dc.creatorCruz, Wilmar
dc.creatorArzola, Nelson
dc.date2020-01-16T14:45:45Z
dc.date2020-01-16T14:45:45Z
dc.date2019-09-19
dc.date.accessioned2023-08-31T19:22:37Z
dc.date.available2023-08-31T19:22:37Z
dc.identifierAraque De Los R?os, O. J., Cruz, W., & Arzola, N. (2019). Modeling and experimental validation of the vibration in an unbalance multi-stage rotor. Journal of Mechanical Engineering and Sciences, 13(3), 5703. [13(3), 2019]. https://doi.org/10.15282/jmes.13.3.2019.30.0456
dc.identifier2231-8380
dc.identifierhttps://hdl.handle.net/20.500.12313/1643
dc.identifier.urihttps://repositorioslatinoamericanos.uchile.cl/handle/2250/8557594
dc.descriptionThis work proposes a finite element method model to predict lateral vibration phenomena arising in the multi-stage rotor (seven stages) with unbalance, including damping and gyroscopic effects. The rotor dynamic analysis includes mathematical and experimental determination of the first and second critical speeds of the rotor and the assessment of the effects induced by the different unbalance combinations. The results show that while considering the unbalance effects in the impellers, critical speeds move to lower frequencies compared to normal conditions when the rotor is properly balanced. Finally, the results obtained analytically achieved a good degree of correspondence with experimental validation tests.
dc.descriptionUniversidad de Ibagu?
dc.languageen
dc.publisherJournal of Mechanical Engineering and Sciences
dc.subjectRotor dynamics
dc.subjectcritical speed
dc.subjectlateral vibration
dc.subjectfinite element analysis
dc.subjectstiffness
dc.subjectdamping
dc.titleModeling and experimental validation of the vibration in an unbalance multi-stage rotor
dc.typeArticle


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