The Resource Fluid-structure interactions : slender structures and axial flow, Michael P. Paidoussis, (electronic resource)

Fluid-structure interactions : slender structures and axial flow, Michael P. Paidoussis, (electronic resource)

Label
Fluid-structure interactions : slender structures and axial flow
Title
Fluid-structure interactions
Title remainder
slender structures and axial flow
Statement of responsibility
Michael P. Paidoussis
Creator
Subject
Genre
Language
  • eng
  • eng
Summary
This volume emphasizes the fundamentals and mechanisms giving rise to flow-induced vibration of use to researchers, designers, and operators. Fluid?Structure Interactions provides useful problem-solving tools, and conveys the ideas in a physically comprehensible manner. The book includes a complete bibliography of important work in the field.. The Non-linear behaviour of Fluid-Structure interactions. The possible existence of chaotic oscillations. The use of this area as a model to demonstrate new mathematical techniquesThis book will prove invaluable
Cataloging source
MiAaPQ
http://library.link/vocab/creatorName
Paidoussis, M. P
Dewey number
  • 532.051
  • 624.1/71 21
  • 624.171
Illustrations
illustrations
Index
index present
Language note
English
LC call number
TA357.5.F58
LC item number
P35 1998
Literary form
non fiction
Nature of contents
  • dictionaries
  • bibliography
http://library.link/vocab/subjectName
Fluid-structure interaction
Label
Fluid-structure interactions : slender structures and axial flow, Michael P. Paidoussis, (electronic resource)
Instantiates
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Front Cover; Fluid-Structure Interactions: Slender Structures and Axial Flow; Copyright Page; Contents; Preface; Artwork Acknowledgments; Chapter 1. Introduction; 1.1 General overview; 1.2 Classification of flow-induced vibrations; 1.3 Scope and contents of volume 1; 1.4 Contents of volume 2; Chapter 2. Concepts, Definitions and Methods; 2.1 Discrete and distributed parameter systems; 2.2 The fluid mechanics of fluid-structure interactions; 2.3 Linear and nonlinear dynamics; Chapter 3. Pipes Conveying Fluid: Linear Dynamics I; 3.1 Introduction; 3.2 The fundamentals
  • 3.3 The equations of motion3.4 Pipes with supported ends; 3.5 Cantilevered pipes; 3.6 Systems with added springs, supports, masses and other modifications; 3.7 Long pipes and wave propagation; 3.8 Articulated pipes; Chapter 4. Pipes Conveying Fluid: Linear Dynamics II; 4.1 Introduction; 4.2 Nonuniform pipes; 4.3 Aspirating pipes and ocean mining; 4.4 Short pipes and refined flow modelling; 4.5 Pipes with harmonically perturbed flow; 4.6 Forced vibration; 4.7 Applications; 4.8 Concluding remarks; Chapter 5. Pipes Conveying Fluid: Nonlinear and Chaotic Dynamics; 5.1 Introductory comments
  • 5.2 The nonlinear equations of motion5.3 Equations for articulated systems; 5.4 Methods of solution and analysis; 5.5 Pipes with supported ends; 5.6 Articulated cantilevered pipes; 5.7 Cantilevered pipes; 5.8 Chaotic dynamics; 5.9 Nonlinear parametric resonances; 5.10 Oscillation-induced; 5.11 Concluding remarks; Chapter 6. Curved Pipes Conveying Fluid; 6.1 Introduction; 6.2 Formulation of the problem; 6.3 Finite element analysis; 6.4 Curved pipes with supported ends; 6.5 Curved cantilevered pipes; 6.6 Curved pipes with an axially sliding end; Appendices
  • A First-principles Derivation of the Equation of Motion of a Pipe Conveying FluidB Analytical Evaluation of bsr, Csr and dsr; C Destabilization by Damping: T. Brooke Benjamin's Work; D Experimental Methods for Elastomer Pipes; E The Timoshenko Equations of Motion and Associated Analysis; F Some of the Basic Methods of Nonlinear Dynamics; G Newtonian Derivation of the Nonlinear Equations of Motion of a Pipe Conveying Fluid; H Nonlinear Dynamics Theory Applied to a Pipe Conveying Fluid; I The Fractal Dimension from the Experimental Pipe-vibration Signal
  • J Detailed Analysis for the Derivation of the Equations of Motion of Chapter 6K Matrices for the Analysis of an Extensible Curved Pipe Conveying Fluid; References; Index; Journal of Fluids and Structures
Dimensions
unknown
Extent
1 online resource (589 p.)
Form of item
online
Isbn
9780080531755
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (EBL)313634
  • (OCoLC)476102902
  • (SSID)ssj0000156206
  • (PQKBManifestationID)11162693
  • (PQKBTitleCode)TC0000156206
  • (PQKBWorkID)10123942
  • (PQKB)10254582
  • (MiAaPQ)EBC313634
  • (EXLCZ)991000000000384004
Label
Fluid-structure interactions : slender structures and axial flow, Michael P. Paidoussis, (electronic resource)
Publication
Note
Description based upon print version of record
Bibliography note
Includes bibliographical references and index
Carrier category
online resource
Carrier category code
cr
Content category
text
Content type code
txt
Contents
  • Front Cover; Fluid-Structure Interactions: Slender Structures and Axial Flow; Copyright Page; Contents; Preface; Artwork Acknowledgments; Chapter 1. Introduction; 1.1 General overview; 1.2 Classification of flow-induced vibrations; 1.3 Scope and contents of volume 1; 1.4 Contents of volume 2; Chapter 2. Concepts, Definitions and Methods; 2.1 Discrete and distributed parameter systems; 2.2 The fluid mechanics of fluid-structure interactions; 2.3 Linear and nonlinear dynamics; Chapter 3. Pipes Conveying Fluid: Linear Dynamics I; 3.1 Introduction; 3.2 The fundamentals
  • 3.3 The equations of motion3.4 Pipes with supported ends; 3.5 Cantilevered pipes; 3.6 Systems with added springs, supports, masses and other modifications; 3.7 Long pipes and wave propagation; 3.8 Articulated pipes; Chapter 4. Pipes Conveying Fluid: Linear Dynamics II; 4.1 Introduction; 4.2 Nonuniform pipes; 4.3 Aspirating pipes and ocean mining; 4.4 Short pipes and refined flow modelling; 4.5 Pipes with harmonically perturbed flow; 4.6 Forced vibration; 4.7 Applications; 4.8 Concluding remarks; Chapter 5. Pipes Conveying Fluid: Nonlinear and Chaotic Dynamics; 5.1 Introductory comments
  • 5.2 The nonlinear equations of motion5.3 Equations for articulated systems; 5.4 Methods of solution and analysis; 5.5 Pipes with supported ends; 5.6 Articulated cantilevered pipes; 5.7 Cantilevered pipes; 5.8 Chaotic dynamics; 5.9 Nonlinear parametric resonances; 5.10 Oscillation-induced; 5.11 Concluding remarks; Chapter 6. Curved Pipes Conveying Fluid; 6.1 Introduction; 6.2 Formulation of the problem; 6.3 Finite element analysis; 6.4 Curved pipes with supported ends; 6.5 Curved cantilevered pipes; 6.6 Curved pipes with an axially sliding end; Appendices
  • A First-principles Derivation of the Equation of Motion of a Pipe Conveying FluidB Analytical Evaluation of bsr, Csr and dsr; C Destabilization by Damping: T. Brooke Benjamin's Work; D Experimental Methods for Elastomer Pipes; E The Timoshenko Equations of Motion and Associated Analysis; F Some of the Basic Methods of Nonlinear Dynamics; G Newtonian Derivation of the Nonlinear Equations of Motion of a Pipe Conveying Fluid; H Nonlinear Dynamics Theory Applied to a Pipe Conveying Fluid; I The Fractal Dimension from the Experimental Pipe-vibration Signal
  • J Detailed Analysis for the Derivation of the Equations of Motion of Chapter 6K Matrices for the Analysis of an Extensible Curved Pipe Conveying Fluid; References; Index; Journal of Fluids and Structures
Dimensions
unknown
Extent
1 online resource (589 p.)
Form of item
online
Isbn
9780080531755
Media category
computer
Media type code
c
Specific material designation
remote
System control number
  • (EBL)313634
  • (OCoLC)476102902
  • (SSID)ssj0000156206
  • (PQKBManifestationID)11162693
  • (PQKBTitleCode)TC0000156206
  • (PQKBWorkID)10123942
  • (PQKB)10254582
  • (MiAaPQ)EBC313634
  • (EXLCZ)991000000000384004

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