Harmonic Component Analysis of Mode Shapes for Packeted Bladed Disk

Author:

Wang Rui,Xu Zili,Luo Jian,Lv Hongshui

Abstract

Abstract Vibration characteristics of packeted bladed disk is complicated. To study the vibration characteristics of the governing stage bladed disk of 660mw steam turbine, cyclic symmetry method is used to calculate the mode shapes. Fourier transformation of vibration distribution in the tangential and axial direction along the circumferential of the bladed disk is applied to obtain the harmonic components. It is found that the Fourier decomposition of each blade displacement contains not only unique component, but also other components. For integrally shrouded blades, the resonance of the m nodal diameter mode can be obtained only when the corresponding natural frequency satisfies the condition ωn = kn = mn, where n is the rotational speed and m is the harmonic number. For packeted bladed disk, there are additional harmonics that resonance occurs. The harmonic components are related to the nodal diameter number when the number of blades groups and the total number of blades are given. The diagrammatic method is applied to predict the wavenumbers present in modulated eigenfunctions.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference8 articles.

1. Long arc shrouding—a reliability improvement for untuned steam turbine blading;Ortolano;Journal of Engineering for Gas Turbines and Power,1981

2. A continuous analog model for grouped-blade vibration;Wagner;Journal of Sound and Vibration,1993

3. Free and forced vibration of closely coupled turbomachinery blades;Huang;AIAA Journal,1981

4. Excitation of rotationally periodic structures;Wildheim;Journal of Applied Mechanics,1979

5. Vibration modes of packeted bladed disks;Ewins;Journal of Vibration and Acoustics,1984

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