Numerical prediction of the performance of gas-lubricated spiral groove thrust bearings
暂无分享,去创建一个
Abstract The objective of this paper is to develop an accurate numerical procedure for the analysis of nominally flat contacts with spiral grooves lubricated by gases. The numerical procedure, which is based on the control-volume method, enables the solutions of the non-linear Reynolds equation to be obtained without limitation in geometry and operating conditions. Satisfactory flow balance was achieved on the control volumes as well as on the whole boundary and the method was proved to be very accurate. Convergence of the method was quick for any compressibility number. Three types of contact with spiral grooves were analysed. They were hydrodynamic bearings without interior chambers, hydrodynamic bearings with interior chambers and hybrid bearings. The effects of spiral angle, groove geometry (length, depth and width) and compressibility on performances were investigated for all possible designs.
[1] D. D. James,et al. Numerical Analysis of the Gas-Lubricated Spiral-Groove Thrust Bearing-Compressor , 1967 .
[2] Bernard Tournerie,et al. Finite element analysis of grooved gas thrust bearings and grooved gas face seals , 1993 .
[3] P Hernandez,et al. Modelling of the Behaviour of Dynamical Gas Seals: Calculation with a Finite Element Method Implicitly Assuring the Continuity of Flow , 1995 .