Wave Propagation in Structures: Spectral Analysis Using Fast Discrete Fourier Tr

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Wave Propagation in Structures

by James F. Doyle

This book introduces spectral analysis as a means of investigating wave propagation and transient oscillations in structures.

FORMAT Hardcover LANGUAGE English CONDITION Brand New

Publisher Description

Mechanical engineering. an engineering discipline borne of the needs of the in­ dustrial revolution. is once again asked to do its substantial share in the call for industrial renewal. The general call is urgent as we face profound issues of produc­ tivity and competitiveness that require engineering solutions. among others. The Mechanical Engineering Series features graduate texts and research monographs intended to address the need for information in contemporary areas of mechanical engineering. The series is conceived as a comprehensive one that covers a broad range of concentrations important to mechanical engineering graduate education and re­ search. We are fortunate to have a distinguished roster of consulting editors on the advisory board. each an expert in one the areas of concentration. The names of the consulting editors are listed on the facing page of this volume. The areas of concentration are: applied mechanics; biomechanics; computational mechan­ ics; dynamic systems and control; energetics; mechanics of materials; processing; thermal science; and tribology.

Notes

This book introduces spectral analysis as a means of investigating wave propagation and transient oscillations in structures. Intended as a texbook for graduate students of mechanical or aerospace engineering, the book will also be of interest to practicing engineers in these and related disciplines. This new edition makes use of recent developments in hardware and software, such as FFT algorithms, and includes new chapters on structural acoustics and on connected large plates.

Table of Contents

1 Spectral Analysis of Wave Motion.- 1.1 Continuous Fourier Transforms.- 1.2 Discrete Fourier Transform.- 1.3 Examples Using the FFT Algorithm.- 1.4 Experimental Aspects of Wave Signals.- 1.5 Spectral Analysis of Wave Motion.- 1.6 Propagating and Reconstructing Waves.- Problems.- 2 Longitudinal Waves in Rods.- 2.1 Elementary Rod Theory.- 2.2 Basic Solution for Waves in Rods.- 2.3 Dissipation in Rods.- 2.4 Coupled Thermoelastic Waves.- 2.5 Reflections and Transmissions.- 2.6 Distributed Loading.- Problems.- 3 Flexural Waves in Beams.- 3.1 Bernoulli-Euler Beam Theory.- 3.2 Basic Solution for Waves in Beams.- 3.3 Bernoulli-Euler Beam with Constraints.- 3.4 Reflection of Flexural Waves.- 3.5 Curved Beams and Rings.- 3.6 Coupled Beam Structure.- Problems.- 4 Higher-Order Waveguides.- 4.1 Waves in Infinite Media.- 4.2 Semi-Infinite Media.- 4.3 Doubly Bounded Media.- 4.4 Doubly Bounded Media: Lamb Waves.- 4.5 Hamilton's Principle.- 4.6 Modified Beam Theories.- 4.7 Modified Rod Theories.- Problems.- 5 The Spectral Element Method.- 5.1 Structures as Connected Waveguides.- 5.2 Spectral Element for Rods.- 5.3 Spectral Element for Beams.- 5.4 General Frame Structures.- 5.5 Structural Applications.- 5.6 Waveguides with Varying Cross Section.- 5.7 Spectral Super-Elements.- 5.8 Impact Force Identification.- Problems.- 6 Waves in Thin Plates.- 6.1 Plate Theory.- 6.2 Point Impact of a Plate.- 6.3 Wavenumber Transform Solution.- 6.4 Waves Reflected from a Straight Edge.- 6.5 Scattering of Flexural Waves.- 6.6 Lateral Boundary Conditions.- 6.7 Curved Plates and Shells.- Problems.- 7 Structure—Fluid Interaction.- 7.1 Acoustic Wave Motion.- 7.2 Plate—Fluid Interaction.- 7.3 Double Panel Systems.- 7.4 Waveguide Modeling.- 7.5 Radiation from Finite Plates.- 7.6 Cylindrical Cavity.-Problems.- 8 Thin-Walled Structures.- 8.1 Membrane Spectral Elements.- 8.2 Spectral Elements for Flexure.- 8.3 Folded Plate Structures.- 8.4 Structural Applications.- 8.5 Segmented Cylindrical Shells.- 8.6 Future of Spectral Elements.- Problems.- Afterword.- Appendix: Bessel Functions.- References.

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Long Description

Mechanical engineering. an engineering discipline borne of the needs of the in

Description for Sales People

This book introduces spectral analysis as a means of investigating wave propagation and transient oscillations in structures. Intended as a texbook for graduate students of mechanical or aerospace engineering, the book will also be of interest to practicing engineers in these and related disciplines. This new edition makes use of recent developments in hardware and software, such as FFT algorithms, and includes new chapters on structural acoustics and on connected large plates.

Details ISBN0387949402 Author James F. Doyle Short Title WAVE PROPAGATION IN STRUCTURES Language English Edition 2nd ISBN-10 0387949402 ISBN-13 9780387949406 Media Book Format Hardcover DEWEY 624.171 Year 1997 Imprint Springer-Verlag New York Inc. Subtitle Spectral Analysis Using Fast Discrete Fourier Transforms Place of Publication New York, NY Country of Publication United States Birth 1951 Affiliation Purdue University, Lafayette, USA Pages 321 Replaces 9780387970783 DOI 10.1007/b92249;10.1007/978-1-4612-1832-6 AU Release Date 1997-06-20 NZ Release Date 1997-06-20 US Release Date 1997-06-20 UK Release Date 1997-06-20 Publisher Springer-Verlag New York Inc. Edition Description 2nd ed. 1997 Series Mechanical Engineering Series Publication Date 1997-06-20 Alternative 9781461273042 Illustrations XIV, 321 p. Audience Postgraduate, Research & Scholarly

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  • Condition: Nuovo
  • ISBN-13: 9780387949406
  • Book Title: Wave Propagation in Structures
  • ISBN: 9780387949406
  • Publication Year: 1997
  • Type: Textbook
  • Format: Hardcover
  • Subject Area: Mechanical Engineering
  • Language: English
  • Publication Name: Wave Propagation in Structures: Spectral Analysis Using Fast Discrete Fourier Transforms
  • Item Height: 235mm
  • Author: James F. Doyle
  • Publisher: Springer-Verlag New York Inc.
  • Item Width: 155mm
  • Item Weight: 1440g
  • Number of Pages: 321 Pages

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