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A new method for studying the 3D transient flow of misaligned journal bearings in flexible rotor-bearing systems 被引量:12

A new method for studying the 3D transient flow of misaligned journal bearings in flexible rotor-bearing systems
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摘要 The effects of journal misalignment on the transient flow of a finite grooved journal bearing are presented in this study. A new 3D computational fluid dynamics (CFD) analysis method is applied. Also, the quasi-coupling calculation of transient fluid dynamics of oil film in journal bearing and rotor dynamics is considered in the analysis. Based on the structured mesh, a new approach for mesh movement is proposed to update the mesh volume when the journal moves during the fluid dynamics simula- tion of an oil film. Existing dynamic mesh models provided by FLUENT are not suitable for the transient oil flow in journal bearings. The movement of the journal is obtained by solving the moving equations of the rotor-bearing system with the calculated film pressure as the boundary condition of the load. The data exchange between fluid dynamics and rotor dynamics is realized by data files. Results obtained from the CFD model were consistent with previous experimental results on misaligned journal bearings. Film pressure, oil film force, friction torque, misalignment moment and attitude angle were calculated and compared for mis- aligned and aligned journal bearings. The results indicate that bearing performances are greatly affected by misalignment which is caused by unbalanced excitation, and the CFD method based on the fluid-structure interaction (FSI) technique can effectively predict the transient flow field of a misaligned journal bearing in a rotor-bearing system. The effects ofjournal misalignment on the transient flow of a finite grooved journal bearing are presented in this study. A new 3D computational fluid dynamics (CFD) analysis method is applied. Also, the quasi-coupling calculation of transient fluid dynamics:of oil film in journal bearing and rotor dynamics is considered in the analysis. Based on the structured mesh, a new approach for mesh movement is proposed to update the mesh volume when the journal moves during the fluid dynamics simula- tion of an oil film. Existing dynamic mesh models provided by FLUENT are not suitable for the transient oil flow in journal bearings. The movement of the journal is obtained by solving the moving equations of the rotor-bearing system with the calculated film pressure as the boundary condition of the load. The data exchange between fluid dynamics and rotor dynamics is realized by data files. Results obtained from the CFD model were consistent with previous experimental results on misaligned journal bearings Film pressure, oil film force, friction torque, misalignment moment and attitude angle were calculated and compared for mis- aligned and aligned journal bearings. The results indicate that bearing performances are greatly affected by misalignment which is caused by unbalanced excitation, and the CFD method based on the fluid-structure interaction (FSI) technique can effectively predict the transient flow field ofa misaligned journal bearing in a rotor-bearing system.
出处 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2012年第4期293-310,共18页 浙江大学学报(英文版)A辑(应用物理与工程)
基金 supported by the National High-Tech R&D (863) Program of China (No. 2009AA04Z413) the Natural Science Foundation of Zhejiang Province (No. Y1110109),China
关键词 错误排列 短暂流动 计算液体动力学(CFD ) 液体结构相互作用(FSI ) 杂志适用 Misalignment, Transient flow, Computational fluid dynamics (CFD), Fluid-structure interaction (FSI), Journalbearing
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  • 1Arumugam, P., Swarnamani, S., Prabhu, B.S., 1997. Effects of journal misalignment on the performance characteristics of three-lobe bearings. Wear, 206(1-2):122-129. [doi:10. 1016/S0043-1648(96)07337-1].
  • 2Asanable, S., Akahoshi, M., Asai, R., 1971. Theoretical andExperimental Investigation of Misaligned Journal Bear-ing Performance. Tribology Convention, Institution of Mechanical Engineers, London, C36/71.
  • 3Banwait, S.S., Chandrawat, H.N., Adithan, M., 1998. Ther-mohydrodynamic Analysis of Misaligned Plain Journal Bearing. Proceeding of First Asia International Confer-ence on Tribology, Beijing, p.35-40.
  • 4Boedo, S., Booker, J.F., 2004. Classic bearing misalignmentand edge loading: a numerical study of limiting cases.Journal of Tribology, 126(3):535-541. [doi:10.1115/1.1739241].
  • 5Bouyer, J., Fillon, M., 2002. An experimental analysis ofmisalignment effects on hydrodynamic plain journalbearing performances. Journal of Tribology, 124(2):313-319. [doi:10.1115/1.1402180].
  • 6Bou-Said, B., Nicolas, D., 1992. Effects of misalignment on static and dynamic characteristics of hybrid bearings. Tribology Transactions, 35(2):325-331.
  • 7Buckholz, R.H., Lin, J.F., 1986. The effect of journal bearingmisalignment on load and cavitation for non-Newton lu-bricants. Journal of Tribology, 108(4):645-654. [doi:10.1115/1.3261295].
  • 8Chen, P.Y.P., Hahn, E.J., 1998. Use of computational fluid dynamics in hydrodynamic lubrication. Journal of Engi-neering Tribology, 212(6):427-436. [doi:10.1243/1350 650981542236].
  • 9Chen, P.Y.P., Hahn, E.J., 2000. Side clearance effects on squeeze film damper performance. Tribology Interna-tional, 33(3-4):161-165. [doi:10.1016/S0301-679X(00) 00022-0].
  • 10Dowson, D., Taylor, C.M., 1979. Cavitation in bearings. An-nual Review of Fluid Mechanics, 11(1):35-66. [doi:10.1146/annurev.fl.11.010179.000343].

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