| Title | ΔΥΝΑΜΙΚΗ ΚΑΤΑΣΚΕΥΩΝ / STRUCTURAL DYNAMICS |
| Code | 214 |
| Faculty | Engineering |
| School | Mechanical Engineering |
| Cycle / Level | 1st / Undergraduate |
| Teaching Period | Spring |
| Coordinator | Dimitrios Giagkopoulos |
| Common | Yes |
| Status | Active |
| Course ID | 20000451 |
Programme of Study: UPS of School of Mechanical Engineering
Registered students: 43
| Orientation | Attendance Type | Semester | Year | ECTS |
|---|---|---|---|---|
| Energy | Elective Courses belonging to the other | 8 | 4 | 5 |
| Design and Structures | Compulsory Course belonging to the selected specialization (Compulsory Specialization Course) | 8 | 4 | 5 |
| Industrial Management | Elective Courses belonging to the other | 8 | 4 | 5 |
| Academic Year | 2017 – 2018 |
| Class Period | Spring |
| Faculty Instructors |
|
| Weekly Hours | 5 |
| Class ID | 600105289
|
Class Schedule
| Building | Πολυτεχνείο (πτέρυγα Β) |
| Floor | Όροφος 1 |
| Hall | 553-554 (90) |
| Calendar | Monday 14:00 to 16:00 |
| Building | Πολυτεχνείο (πτέρυγα Β) |
| Floor | Όροφος 1 |
| Hall | 553-554 (90) |
| Calendar | Tuesday 16:00 to 19:00 |
Course Type 2016-2020
- Background
- Scientific Area
Course Type 2011-2015
Specific Foundation / Core
Mode of Delivery
- Face to face
Digital Course Content
- e-Study Guide https://qa.auth.gr/en/class/1/600105289
- eLearning:
Language of Instruction
- Greek (Instruction, Examination)
Prerequisites
Required Courses
- 116 DYNAMICS
- 124 MECHANICAL VIBRATION AND MACHINE DYNAMICS
General Competences
- Apply knowledge in practice
- Retrieve, analyse and synthesise data and information, with the use of necessary technologies
- Adapt to new situations
- Make decisions
- Work autonomously
- Work in teams
- Work in an international context
- Work in an interdisciplinary team
- Generate new research ideas
- Advance free, creative and causative thinking
Course Content (Syllabus)
Dynamic analysis of two dimensional structural elements (membranes, disks, plates). Classical approximate methods in structural dynamics (Rayleigh, Rayleigh-Ritz, Galerkin method, assumed mode method). Method of finite elements (geometric discretization, derivation of mass and stiffness matrix and excitation vector for single-dimensional elements, coordinate transformation and assembly of global matrices). Nonlinear oscillations and stability of dynamical systems: free oscillation, self-excited oscillations, external, parametric and internal resonance.
Educational Material Types
- Book
Use of Information and Communication Technologies
Use of ICT
- Use of ICT in Course Teaching
- Use of ICT in Communication with Students
Course Organization
| Activities | Workload | ECTS | Individual | Teamwork | Erasmus |
|---|---|---|---|---|---|
| Lectures | 48 | 1.6 | ✓ | ||
| Reading Assigment | 90 | 3 | ✓ | ||
| Other / Others | 12 | 0.4 | |||
| Total | 150 | 5 |
Student Assessment
Student Assessment methods
- Oral Exams (Formative, Summative)
Bibliography
Course Bibliography (Eudoxus)
• Σ. Νατσιάβας, “Ταλαντώσεις Δυναμικών Συστημάτων με μη Γραμμικά Χαρακτηριστικά,” Εκδόσεις Ζήτη, Θεσσαλονίκη, 2000.
• Α. Κανάραχος και Ι. Αντωνιάδης, “Δυναμική Μηχανών,” Εκδόσεις Παπασωτηρίου, Αθήνα.
Additional bibliography for study
1. W.C. Hurty and M.F. Rubinstein, "Dynamics of Structures," Prentice Hall, 1964.
2. R.W. Clough and J. Penzien, "Dynamics of Structures," McGraw-Hill, 1975.
3. L. Meirovitch, "Analytical Methods in Vibrations," The MacMillan Company, 1967.
4. R.R. Craig, "Structural Dynamics," J. Wiley & Sons, 1981.
5. S.S. Rao, "Mechanical Vibrations," 2nd ed., Addison Wesley, 1990.
6. A.D. Dimarogonas and S. Haddad, "Vibration for Engineers," Prentice Hall, Englewood Clifs, New Jersey, 1992.
7. K.J. Bathe, "Finite Element Procedures in Engineering Analysis," Prentice Hall, 1982.
8. A.H. Nayfeh and D.T. Mook, "Nonlinear Oscillations," J. Wiley & Sons, 1979.
9. J.J. Stoker, "Nonlinear Vibrations," Interscience Publishers, Inc. 1950.
Last Update
13-10-2018