
The Boundary Element Method
Applications in Sound and Vibration
A A Balkema Publishers
1st Edition
Published on 15. August 2004
Book
Hardback
200 pages
978-90-5809-657-9 (ISBN)
Description
The Boundary Element Method, or BEM, is a powerful numerical analysis tool with particular advantages over other analytical methods. With research in this area increasing rapidly and more uses for the method appearing, this timely book provides a full chronological review of all techniques that have been proposed so far, covering not only the fundamentals of the BEM but also a wealth of information on related computational analysis techniques and formulations, and their applications in engineering, physics and mathematics. An indispensable handbook and source of inspiration for researchers and professionals in these fields, this book is also an ideal textbook for graduate engineering students.
More details
Language
English
Place of publication
Rotterdam
Netherlands
Target group
Graduate students, researchers and professionals in Engineering, Applied Physics and Applied Mathematics
Dimensions
Height: 234 mm
Width: 156 mm
Weight
530 gr
ISBN-13
978-90-5809-657-9 (9789058096579)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Book
06/2020
1st Edition
CRC Press
€95.40
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Book
11/2004
1st Edition
Taylor & Francis
€129.25
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E-Book
08/2004
CRC Press
€88.49
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E-Book
08/2004
CRC Press
€88.49
Available for download
Persons
Ali\, A.; Rajakumar\, C.
Content
1. Introduction 2. Boundary Element Method Fundamentals 3. Isoparametric Boundary Elements 4. Anisotropy, Axisymmetry and Zoning 5. Time-Harmonic Analysis in Acoustics and Elasticity 6. Dynamic Analysis: Acoustics and Elasticity 7. Basics of Eigenvalue Problem Formulation 8. Algebraic Eigenvalue Problem in Boundary Elements 9. Advanced Concepts in Boundary Element Algebraic Eigenproblem 10. Acoustic Fluid-Structure Interaction Problems 11. Solution Methods of Eigenvalue Problems 12. Discussion and Future Research