DocumentCode :
2337569
Title :
Study on the thermoelastohydrodynamic performance of tilting-pad bearings for large-scale power units
Author :
Guo, Yong ; Wang, Xiaoning ; Yuan, Xiaoyang ; Li, Xiaojiang
Author_Institution :
Key Lab. of Minist. of Educ. for Modern, Xi´´an Jiaotong Univ., Xi´´an, China
fYear :
2009
fDate :
25-27 May 2009
Firstpage :
2070
Lastpage :
2075
Abstract :
In this paper, a thermoelastohydrodynamic model for tilting-pad bearing is developed. In our proposed model, the study of temperature field is characteristicly focused on the temperature change along the film thickness direction, and thermal-elastic deformation is calculated based on assumption that the pad is a cantilever beam. The model is described with the generalized Reynolds equation, the energy equation, the heat transfer equation, the force equilibrium equation and the deformation equation. Finite difference method is used to solve those equations. The characteristics of bearing and pad for large-scale power units, such as the oil pressure field of pad , the temperature field of oil film and pad, the thermoelastic deformation of pad, the power loss and the flow of tilting-pad bearing, are derived. With derived characteristics, we analyze the influence of power loss, flow, temperature of lubricant film, minimum film thinness of bearing, minimum film thickness of pad, maximum deformation, highest temperature, and maximum pressure caused by change of rotational speed.
Keywords :
beams (structures); cantilevers; elastic deformation; films; finite difference methods; heat transfer; hydrodynamics; lubricants; machine bearings; power apparatus; thermoelasticity; cantilever beam; deformation equation; energy equation; film thickness; finite difference method; force equilibrium equation; generalized Reynolds equation; heat transfer equation; large-scale power units; lubricant film temperature; minimum bearing film thinness; minimum pad film thickness; oil film; pad; power loss; rotational speed change; temperature change; temperature field; thermal-elastic deformation; thermoelastohydrodynamic performance; tilting-pad bearings; Deformable models; Difference equations; Finite difference methods; Heat transfer; Large-scale systems; Lubricants; Petroleum; Structural beams; Temperature; Thermoelasticity; Journal Bearing; Large-scale Power Unit; Thermoelastohydrodynamic Model; Tilting-pad Bearing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics and Applications, 2009. ICIEA 2009. 4th IEEE Conference on
Conference_Location :
Xi´an
Print_ISBN :
978-1-4244-2799-4
Electronic_ISBN :
978-1-4244-2800-7
Type :
conf
DOI :
10.1109/ICIEA.2009.5138566
Filename :
5138566
Link To Document :
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