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Wave propagation in structures
~
Doyle, James F.
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Wave propagation in structures
Record Type:
Electronic resources : Monograph/item
Title/Author:
Wave propagation in structures/ by James F. Doyle.
Author:
Doyle, James F.
Published:
Cham :Springer International Publishing : : 2021.,
Description:
xviii, 421 p. :ill., digital ;24 cm.
[NT 15003449]:
Preface -- Notation -- Introduction -- Spectral Analysis of Wave Motion -- Longitudinal Waves in Rods -- Flexural Waves in Beams -- Higher Order Waveguide Models -- The Spectral Element Method -- Waves in Plates and Cylinders -- Thin Walled Structures -- Structure/Fluid Interactions -- Discrete and Discretized Structures -- Afterword -- Appendix: Bessel Functions -- Index.
Contained By:
Springer Nature eBook
Subject:
Wave-motion, Theory of. -
Online resource:
https://doi.org/10.1007/978-3-030-59679-8
ISBN:
9783030596798
Wave propagation in structures
Doyle, James F.
Wave propagation in structures
[electronic resource] /by James F. Doyle. - Third edition. - Cham :Springer International Publishing :2021. - xviii, 421 p. :ill., digital ;24 cm. - Mechanical engineering series,0941-5122. - Mechanical engineering series..
Preface -- Notation -- Introduction -- Spectral Analysis of Wave Motion -- Longitudinal Waves in Rods -- Flexural Waves in Beams -- Higher Order Waveguide Models -- The Spectral Element Method -- Waves in Plates and Cylinders -- Thin Walled Structures -- Structure/Fluid Interactions -- Discrete and Discretized Structures -- Afterword -- Appendix: Bessel Functions -- Index.
This third edition builds on the introduction of spectral analysis as a means of investigating wave propagation and transient oscillations in structures. Each chapter of the textbook has been revised, updated and augmented with new material, such as a modified treatment of the curved plate and cylinder problem that yields a relatively simple but accurate spectral analysis. Finite element methods are now integrated into the spectral analyses to gain further insights into the high-frequency problems. In addition, a completely new chapter has been added that deals with waves in periodic and discretized structures. Examples for phononic materials meta-materials as well as genuine atomic systems are given. Systematically develops and then applies the spectral methods to analyzing the dynamic responses; Examines spectral analysis of discrete and discretized structures; Explains spectral analysis as applied to metamaterials and nanostructures; Reinforces reader understanding with a combination of experimental and analytical results related to wave propagation in structures.
ISBN: 9783030596798
Standard No.: 10.1007/978-3-030-59679-8doiSubjects--Topical Terms:
705440
Wave-motion, Theory of.
LC Class. No.: QA935 / .D693 2021
Dewey Class. No.: 624.171
Wave propagation in structures
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Imprint: Springer,
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2021.
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xviii, 421 p. :
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ill., digital ;
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24 cm.
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Mechanical engineering series,
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0941-5122
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Preface -- Notation -- Introduction -- Spectral Analysis of Wave Motion -- Longitudinal Waves in Rods -- Flexural Waves in Beams -- Higher Order Waveguide Models -- The Spectral Element Method -- Waves in Plates and Cylinders -- Thin Walled Structures -- Structure/Fluid Interactions -- Discrete and Discretized Structures -- Afterword -- Appendix: Bessel Functions -- Index.
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This third edition builds on the introduction of spectral analysis as a means of investigating wave propagation and transient oscillations in structures. Each chapter of the textbook has been revised, updated and augmented with new material, such as a modified treatment of the curved plate and cylinder problem that yields a relatively simple but accurate spectral analysis. Finite element methods are now integrated into the spectral analyses to gain further insights into the high-frequency problems. In addition, a completely new chapter has been added that deals with waves in periodic and discretized structures. Examples for phononic materials meta-materials as well as genuine atomic systems are given. Systematically develops and then applies the spectral methods to analyzing the dynamic responses; Examines spectral analysis of discrete and discretized structures; Explains spectral analysis as applied to metamaterials and nanostructures; Reinforces reader understanding with a combination of experimental and analytical results related to wave propagation in structures.
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Wave-motion, Theory of.
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Fourier transformations.
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Structural analysis (Engineering)
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Solid Mechanics.
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Vibration, Dynamical Systems, Control.
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Engineering (SpringerNature-11647)
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EB QA935 .D693 2021
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