An Equivalent Reduced Modelling Method and its Application to Shaft—Blade Coupled Torsional Vibration Analysis of a Turbine—Generator Set

Author:

Okabe A1,Otawara Y1,Kaneko R1,Matsushita O2,Namura K2

Affiliation:

1. Thermal Power Plant Design Department, Hitachi Limited, Ibaraki-ken, Japan

2. Mechanical Engineering Research Laboratory, Hitachi Limited, Ibaraki, Japan

Abstract

A coupled vibrating system (for example turbine-generator set), consisting of a main system (for example shaft system) and a sub-system (for example blade system) which are connected at bonding points (for example the centre boss of a blade), is equivalently reduced to a model suitable for analysis. According to this modelling technique, the eigenvalue analysis of the uncoupled flexible sub-system is done first under the assumption of the fixed bonding point. Then, an equivalent mass-spring system is produced for each eigenmode of the uncoupled subsystem. In this way, the main system plus the additional equivalent mass-spring model of the sub-system is combined into a global system model. This modelling technique is applied to the shaft-blade coupled vibration problems in an actual turbine-generator set and its effectiveness is provided with experimental test results.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Energy Engineering and Power Technology

Reference15 articles.

1. Jainski T. Stresses of turbo-generator shafts and foundations caused by electrical system faults. IMechE Conference on Vibrations in rotating machinery, 1980, pp. 9–16 (Mechanical Engineering Publications, London).

2. Turbine-Generator Shaft Stresses Due to Network Disturbances A Bibliography with Abstracts

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