DETERMINATION OF THE VIBRATION WITHIN A SQUEEZE-FILM DAMPER UNDER ROTATIONAL UNBALANCE CONDITIONS FROM EXTERNALLY MOUNTED SENSORS

Ghaith Al-Ghazal, Philip Bonello, Sergio Torres Cedillo

    Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

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    Abstract

    Recently, there has been a focus on the use of inverse problem techniques in order to monitor rotor unbalance, and obtain a balancing solution, from vibration measurements on the casing and prior knowledge of the rotor-casing structure. In certain practical configurations that use nonlinear bearings like the squeeze-film damper (SFD) bearing, an inverse model of the bearing is an important part of the unbalance identification process. The inverse bearing model is used to estimate the journal vibration from casing vibration measurements, thus acting as a substitute for internal instrumentation in applications where the rotor is not accessible under operational conditions. Previous research has shown that an inverse bearing model can be identified using a trained Recurrent Neural Network (RNN) from experimental input/output data. However, the RNN was both trained and validated under simulated rotational conditions, wherein the motion was driven by two orthogonally-phased perpendicular shakers.
    In this paper, a RNN of an inverse bearing model that is identified from experimental data generated under simulated rotational conditions is validated under actual rotational (i.e. unbalance-driven) vibration conditions. The necessary modifications to the test rig are presented, together with the identification/training procedure. The results of the validation tests show that the RNN is capable of predicting the frequency spectrum of the dynamic nonlinear response of the journal with reasonable accuracy. This inverse SFD bearing model can be thus used in a future work to identify rotor unbalance.
    Original languageEnglish
    Title of host publicationProceedings of ASME Turbo Expo 2019: Turbomachinery Technical Conference and Exposition GT2019 June 17-21, 2019, Phoenix, Arizona, USA
    DOIs
    Publication statusPublished - 2019
    EventASME Turbo Expo 2019: Turbomachinery Technical Conference and Exposition - Phoenix, United States
    Duration: 17 Jun 201921 Jun 2019

    Conference

    ConferenceASME Turbo Expo 2019: Turbomachinery Technical Conference and Exposition
    Country/TerritoryUnited States
    CityPhoenix
    Period17/06/1921/06/19

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