Thin Film Lubrication and Gas-Lubricated Bearings
ENG-649 / 2 crédits
Enseignant(s): Invited lecturers (see below), Schiffmann Jürg Alexander
Langue: Anglais
Remark: Next time: June 2027 in Microcity (EPFL Neuchatel)
Frequency
Every year
Summary
This course introduces thin film lubrication and its applications to gas-lubricated bearings, including rotordynamics to enable the assessment of the operation of gas-bearing supported rotors.
Content
- Derivation of Reynolds equations
- Hydrodynamic slider bearing
- Infinite-length journal bearing
- Finite length slider
- Finite length aerodynamic bearing
- Dynamic grooved bearings
- Real gas effects
- Condensation
- Practical implementation of gas-lubricated bearings
- Rotordynamics
Note
Deadline to register: May 16th, 2025 at 7pm at the latest
Keywords
Thin film lubrication, gas-lubricated bearings, rotordynamics
Learning Prerequisites
Required courses
Fluid mechanics, dynamical systems
Learning Outcomes
By the end of the course, the student must be able to:
- Select appropriately models to design gas-bearing supported rotors as a function of the operating conditions and applications.
Assessment methods
Students will have to prepare a short report about the numerical implementation of two
problems chosen among the proposed ones. A presence of at least 75% of the lessons is
requested together with the report to receive the credits.
Dans les plans d'études
- Nombre de places: 15
- Forme de l'examen: Rapport de TP (session libre)
- Matière examinée: Thin Film Lubrication and Gas-Lubricated Bearings
- Cours: 28 Heure(s)
- Projet: 6 Heure(s)
- Type: optionnel
Semaine de référence
| Lu | Ma | Me | Je | Ve | |
| 8-9 | |||||
| 9-10 | |||||
| 10-11 | |||||
| 11-12 | |||||
| 12-13 | |||||
| 13-14 | |||||
| 14-15 | |||||
| 15-16 | |||||
| 16-17 | |||||
| 17-18 | |||||
| 18-19 | |||||
| 19-20 | |||||
| 20-21 | |||||
| 21-22 |
Légendes:
Cours
Exercice, TP
Projet, Labo, autre