330-0917/02 – Rotor Dynamics (DYNRO)
Gurantor department | Department of Applied Mechanics | Credits | 10 |
Subject guarantor | prof. Ing. Jaroslav Zapoměl, DrSc. | Subject version guarantor | prof. Ing. Jaroslav Zapoměl, DrSc. |
Study level | postgraduate | Requirement | Choice-compulsory type B |
Year | | Semester | winter + summer |
| | Study language | English |
Year of introduction | 2015/2016 | Year of cancellation | |
Intended for the faculties | FS | Intended for study types | Doctoral |
Subject aims expressed by acquired skills and competences
Capability:
- to analyze dynamical behaviour of rotors
- to set up computational models of rotor systems
- to realize computational simulations
- to explain and evaluate the results
Teaching methods
Individual consultations
Summary
In the subject of Rotor Dynamics the PhD studens get acquainted with the imporatnt
theory of dynamical behaviour rotor systems and theirs foundation, with application of the computer modelling method for solving technical problems in this branch, and with the methods for evaluation of the results of simulations, measurements and experiments. Students will acquire the ability to analyze and solve dynamic behavior of rotors, compile computational models of rotor systems, perform computer simulations and evaluate and interpret results. The important are the applicatins in the technical practise too.
Compulsory literature:
- Krämer, E.: Dynamics of Rotors and Founadations,“ Springer – Verlag, 1993
Recommended literature:
- Vance, J.M.: Rotordynamics of Turbomachinary,“ John Wiley & Sons, Inc., 1988
Way of continuous check of knowledge in the course of semester
The student submits the final work on a given topic, which he consulted throughout the semester. He will defend this work in the end.
E-learning
Other requirements
knowledge of dynamics, mechanical vibrations, physics, mathematics in the extent taught at technological universities in the Czech republic
Prerequisities
Subject has no prerequisities.
Co-requisities
Subject has no co-requisities.
Subject syllabus:
- dynamics of a Jeffcott rotor
- FEM in rotordynamics
- dynamics of rotors with hydrodynamic bearings and squeeze film dampers
- dynamics of rotors of non-circular cross-section
Conditions for subject completion
Occurrence in study plans
Occurrence in special blocks
Assessment of instruction
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