DocumentCode :
633597
Title :
Numerical Calculation of Radial Sliding Bearing Dynamic Characteristics at a High Speed
Author :
Mao Wengui ; Liu Guiping ; Lin Lusheng
Author_Institution :
State Key Lab. of Adv. Design & Manuf. for Vehicle Boay, Hunan Univ., Changsha, China
fYear :
2013
fDate :
29-30 June 2013
Firstpage :
845
Lastpage :
849
Abstract :
Along with the machine to high speed, large scale, power direction and effects of fluid boundary slip, More and more journal bearings operate in turbulent regime. the conventional finite difference method adopted to derive oil-film dynamic coefficients of aerostatic bearings call the Reynolds equation for four times, Only unit division is fine enough in order to achieve the desired accuracy, the unsteady renolds equation has to be solved generally by the method which are rather time consuming in the nonlinear dynamic analysis of sliding bearing. in the paper, the theory of variational inequality and the method dimension-reduction were used to calculate oil-film forces and the dynamic coefficients of journal under the turbulent regime MeaIlwhile some effective techniques are used to save the computing time. which can well reveal the nonlinear dynamic characteristics of journal bearing of the complex turbulent flow conditions. The numerical results show that compared with the results of the finite difference method´s algorithm and CFD software´s using base on dynamic mesh model the computing time of this algorithm can be saved more than 99% under the precision guaranteed.
Keywords :
computational fluid dynamics; finite difference methods; lubricating oils; machine bearings; slip flow; turbulence; CFD software; aerostatic bearings; dynamic mesh model; finite difference method; fluid boundary slip; journal bearings; nonlinear dynamic analysis; oil film dynamic coefficients; radial sliding bearing dynamic characteristics; turbulent flow; unsteady Reynolds equation; variational inequality theory; Automation; Manufacturing; journal bearings; oil-film dynamic coefficients; the variational method; turbulent flow;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Manufacturing and Automation (ICDMA), 2013 Fourth International Conference on
Conference_Location :
Qingdao
Type :
conf
DOI :
10.1109/ICDMA.2013.200
Filename :
6598122
Link To Document :
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