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THE UNIVERSITY of EDINBURGHDEGREE REGULATIONS & PROGRAMMES OF STUDY 2006/2007
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Dynamics 3 (U01099)? Credit Points : 10 ? SCQF Level : 9 ? Acronym : EEL-3-MEDYN The course is designed to allow students to achieve competence in the methods of dynamic analysis for lumped parameter linear systems, covering dynamic response and vibration analysis and, their uses in engineering applications. Entry RequirementsSubject AreasHome subject areaMechanical, (School of Engineering and Electronics, Schedule M) Delivery Information? Normal year taken : 3rd year ? Delivery Period : Semester 2 (Blocks 3-4) ? Contact Teaching Time : 3 hour(s) per week for 11 weeks First Class Information
All of the following classes
? Additional Class Information : Tutorials are on Tue 12:10-13:00 or Tue 16:10-17:00. Summary of Intended Learning Outcomes
On completion of the course, the students should be able to
1. Understand the relevant terminology, including degrees of freedom, natural frequencies, free and forced vibration, transmissibility, resonance and mode shape. 2. Derive correct mathematical models for single and multi-degree of freedom lumped parameter linear systems under different excitations. 3. Represent system equations of motion in matrix form and be familiar with stiffness, mass, and flexibility matrices. 4. Carry out the analysis of a system response for free vibration, steady state harmonic vibration, and transient response to shocks or pulses. 5. Explain the role of vibration absorbers. 6. Explain the phenomenon of shaft/rotor whirling. 7. Explain reciprocating out-of-balance in IC engines and balancing procedures. 8. Use numerical software (MATLAB) to solve eigenvalue problems to determine system natural frequencies and mode shapes. 9. Use numerical software (MATLAB) to determine dynamic response by numerical integration. Assessment Information
Examination 80%
Assignment 20% Exam times
Contact and Further InformationThe Course Secretary should be the first point of contact for all enquiries. Course Secretary Mrs Sian Gowans Course Organiser Dr Konstantin Kamenev Course Website : http://www.see.ed.ac.uk/teaching/mech/ School Website : http://www.see.ed.ac.uk/ College Website : http://www.scieng.ed.ac.uk/ |
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