TEHD analysis of a bidirectional thrust bearing in a pumped storage unit

Author:

Zhai Liming,Wang Zhengwei,Luo Yongyao,Li Zhongjie

Abstract

Purpose The purpose of this paper is to analyze lubrication characteristics of a bidirectional thrust bearing in a pumped storage, considering the effect of the thermal elastic deformation of the pad and collar. Design/methodology/approach This study used the fluid–solid interaction (FSI) technique to investigate the lubrication characteristics of a bidirectional thrust bearing for several typical operating conditions. The influences of the operating conditions and the thrust load on the lubrication characteristics were analyzed. Then, various pivot eccentricities were investigated to analyze the effects of the pivot position. Findings It is found that the effect of the radial tilt angle of the collar runner on the oil film is compensated for by the radial tilt of the pad. The central pivot support system is the main factor limiting the loads of bidirectional thrust bearings. Originality/value This paper has preliminarily revealed the lubrication mechanism of bidirectional tilting-pad thrust bearings. A three-dimensional FSI method is suggested to evaluate the thermal–elastic–hydrodynamic deformations of thrust bearings instead of the conventional method, which iteratively solves the Reynolds equation, the energy equation, the heat conduction equation and the elastic equilibrium equation.

Publisher

Emerald

Subject

Surfaces, Coatings and Films,General Energy,Mechanical Engineering

Reference14 articles.

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2. Effects of support structure on lubricating properties of bi-directional thrust bearings;Journal of Drainage and Irrigation Machinery Engineering,2012

3. Numerical and experimental research of bidirectional thrust bearings used in pump-turbines;Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology,2012

4. Analysis on the thrust bearing failure of pumped-storage generating unit of Guangzhou Pumped Storage Plant;Water Power,2001

5. Application of computational fluid dynamics and fluid-structure interaction method to the lubrication study of a rotor-bearing system;Tribology Letters,2010

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