Introduction to Finite Element Vibration Analysis
There are many books on finite element methods but few give more than a brief description of their application to structural vibration analysis. This book presents an introduction to the mathematical basis of finite element analysis as applied to vibrating systems. Finite element analysis is a technique that is very important in modeling the response of structures to dynamic loads. Although this book assumes no previous knowledge of finite element methods, those who do have knowledge will still find the book to be useful. It can be utilized by aeronautical, civil, mechanical, and structural engineers as well as naval architects. This second edition includes information on the many developments that have taken place over the last twenty years. Existing chapters have been expanded where necessary, and three new chapters have been included that discuss the vibration of shells and multi-layered elements and provide an introduction to the hierarchical finite element method.
- An introduction to the mathematical basis of finite element analysis as applied to vibrating systems
- Assumes no previous knowledge of finite element methods
Reviews & endorsements
"The contents of this work are very well organized, and Petyt (Univ. of Southhamption, UK) gradually introduces important concepts, making it a very useful theoretical reference." X. Le, Wentworth Institute of Technology
"The contents of this work are very well organized ... a very useful theoretical reference. ...Recommended." CHOICE
Product details
August 2010Hardback
9780521191609
516 pages
260 × 186 × 28 mm
1.1kg
235 b/w illus. 90 tables 103 exercises
Available
Table of Contents
- 1. Formulation of the equations of motion
- 2. Element energy functions
- 3. Introduction to the finite element displacement method
- 4. In-plane vibration of plates
- 5. Vibration of solids
- 6. Flexural vibration of plates
- 7. Vibration of stiffened plates and folded plate structures
- 8. Vibration of shells
- 9. Vibration of laminated plates and shells
- 10. Hierarchical finite element method
- 11. Analysis of free vibration
- 12. Forced response
- 13. Forced response II
- 14. Computer analysis technique.