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Detail publikačního výsledku
MALENOVSKÝ, E.; POCHYLÝ, F.
Originální název
Computational Modelling of Dynamic Behaviour and Stability of Journal Bearings Using the Bézier Body
Anglický název
Druh
Stať ve sborníku v databázi WoS či Scopus
Originální abstrakt
New general approach published in this contribution includes a general speed profile and general trajectory of shaft centre that is based on Bézier 3D body. The Bézier surface and body are used for 3D analysis for liquid motion and also for describing geometrical properties. The Navier Stokes and continuity eqs. and boundary conditions were used for the analysis of liquid motion. Liquid is considered as real incompressible and flow is laminar. The control volume method is used for further analysis. Using special transformations it is possible to separate the motion of rigid body and liquid from themselves. For the analysis of liquid motion it is possible to use another suitable program system. This approach is also possible to use for the analysis of dynamic behaviour of squeeze film dampers or seals. The case of long journal bearings is presently being analyzed. It is possible to use some approaches to analyze stability, for example an eigenvalue problem using eqs. for velocity and pressure field, energy equilibrium, tangential forces etc. All are being tested at this time and are being compared with results published in literature.
Anglický abstrakt
Klíčová slova
Journal bearings, Computational modelling, Navier Stokes eq., Bézier body application, Additional effects, Stability motion.
Klíčová slova v angličtině
Autoři
Rok RIV
2011
Vydáno
01.01.2001
Nakladatel
Bently Rotor Dynamics Research Corporation
Místo
Minden, Nevada, USA
ISBN
80-238-7405-5
Kniha
International symposium on stability control of rotating machinery
Strany od
1
Strany počet
17
BibTex
@inproceedings{BUT3081, author="Eduard {Malenovský} and František {Pochylý}", title="Computational Modelling of Dynamic Behaviour and Stability of Journal Bearings Using the Bézier Body", booktitle="International symposium on stability control of rotating machinery", year="2001", pages="17", publisher="Bently Rotor Dynamics Research Corporation", address="Minden, Nevada, USA", isbn="80-238-7405-5" }