Reduced Order Model of a Multistage Bladed Rotor With Geometric Mistuning via Modal Analyses of Finite Element Sectors

Author:

Bhartiya Yasharth1,Sinha Alok1

Affiliation:

1. Department of Mechanical and Nuclear Engineering, Pennsylvania State University, University Park, PA 16802

Abstract

An algorithm to generate a reduced order model of a multistage rotor in which each stage has a different number of blades has been developed. It is shown that a reduced order model can be developed on the basis of tuned modes of certain bladed disks which can be easily obtained via sector analyses. Further, it is shown that the reduced order model can also be obtained when blades are geometrically mistuned. This algorithm is similar to the modified modal domain analysis, which has been recently developed for a single-stage bladed rotor with geometric mistuning. The validity of this algorithm is shown for the finite element model of a two-stage bladed rotor. In addition, the statistical distributions of peak maximum amplitudes and natural frequencies of a two-stage rotor are generated via Monte Carlo simulations for different patterns of geometric mistuning.

Publisher

ASME International

Subject

Mechanical Engineering

Reference10 articles.

1. Effects of Multistage Coupling and Disk Flexibility on Mistuned Bladed Disk Dynamics;Bladh;ASME J. Eng. Gas Turbines Power

2. Multi-Stage Modeling of Turbine Engine Rotor Vibration;Song

3. Materials and Structural Prognosis for Gas Turbine Engines;Littles

4. Reduced-Order Model of a Mistuned Multi-Stage Bladed Rotor;Sinha;Int. J. Turbo Jet Engines

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