4.7 Article

Vibration parameters identification of turbomachinery rotor blades under transient condition using Blade Tip-Timing measurements

Journal

MEASUREMENT
Volume 183, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.measurement.2021.109861

Keywords

Transient resonance passage; Linear sweep rate; Vibration parameters identification; Tip-Timing method; Strain gauge

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This paper proposes a method to identify the vibration parameters of rotating blades under non-stationary conditions using an analytically based solution and a numerical simulator. The method's performance is demonstrated and its accuracy is proved through testing with experimental data.
During run ups and run downs, the rotating blades are subjected to fluctuating forces with time dependent frequencies and the dynamic response of the blades around the resonance crossings deviates from the stationary response. This paper presents a procedure to identify the vibration parameters of rotating blades under this non-stationary condition. An analytically based solution of a single degree of freedom (SDOF) system exposed to a transient harmonic excitation with linear time varying frequency is used for parameters identification. This analytical model is fitted into the Blade Tip-Timing (BTT) data and the vibration parameters are determined by a least square optimization technique. A numerical simulator based on a lumped parameter model of the bladed disk assembly is employed to demonstrate the method performance. Afterwards, the accuracy of the method is proved by testing it on the experimental data acquired by BTT and strain gauges on a rotating bladed disk.

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