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Fluid-structure interactions. = slender structures and axial flow /. [Volume 1]
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Fluid-structure interactions./ Michael P. Paidoussis.
Reminder of title:
slender structures and axial flow /
Author:
Paidoussis, M. P.
Published:
San Diego, CA :Academic Press, Inc., : 1998-,
Description:
v. <1- > :ill. ;25 cm.
[NT 15003449]:
Preface. Introduction. Concepts, Definitions and Methods. Pipes Conveying Fluid: Linear Dynamics I. Pipes Conveying Fluid: Linear Dynamics II. Nonlinear and Chaotic Dynamics. Curved Pipes Conveying Fluid. First-Principles Derivation of Equation of Motion. Analytical Evaluation of h2r, c2, and d3r. Destabilization by Damping. Experimental Methods for Elastomer Pipes. Timoshenko Equations and Associated Analysis. Basics of Nonlinear Dynamics. Newtonian Derivation of Nonlinear Equations. Nonlinear Analysis of a Pipe Conveying Fluid. Fractal Dimension. Derivations for Equations in Chapter 6. Matrices for an Extensible Curved Pipe. Subject Index.
Subject:
Fluid-structure interaction. -
Online resource:
http://www.engineeringvillage.com/controller/servlet/OpenURL?genre=book&isbn=0125443609An electronic book accessible through the World Wide Web; click for information
Online resource:
http://www.sciencedirect.com/science/publication?issn=18745652&volume=1An electronic book accessible through the World Wide Web; click for information
Online resource:
http://www.loc.gov/catdir/toc/els032/98086469.html
Online resource:
http://www.loc.gov/catdir/description/els033/98086469.html
ISBN:
0125443609
Fluid-structure interactions. = slender structures and axial flow /. [Volume 1]
Paidoussis, M. P.
Fluid-structure interactions.
slender structures and axial flow /[Volume 1][electronic resource] :Michael P. Paidoussis. - San Diego, CA :Academic Press, Inc.,1998- - v. <1- > :ill. ;25 cm.
Includes bibliographical references and index.
Preface. Introduction. Concepts, Definitions and Methods. Pipes Conveying Fluid: Linear Dynamics I. Pipes Conveying Fluid: Linear Dynamics II. Nonlinear and Chaotic Dynamics. Curved Pipes Conveying Fluid. First-Principles Derivation of Equation of Motion. Analytical Evaluation of h2r, c2, and d3r. Destabilization by Damping. Experimental Methods for Elastomer Pipes. Timoshenko Equations and Associated Analysis. Basics of Nonlinear Dynamics. Newtonian Derivation of Nonlinear Equations. Nonlinear Analysis of a Pipe Conveying Fluid. Fractal Dimension. Derivations for Equations in Chapter 6. Matrices for an Extensible Curved Pipe. Subject Index.
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 techniques This book will prove invaluable to researchers, practitioners, and students in fluid-structure interactions, flow-induced vibrations, and dynamics and vibrations.
Electronic reproduction.
Amsterdam :
Elsevier Science & Technology,
2007.
Mode of access: World Wide Web.
ISBN: 0125443609
Source: 79239:79239Elsevier Science & Technologyhttp://www.sciencedirect.comSubjects--Topical Terms:
907285
Fluid-structure interaction.
Index Terms--Genre/Form:
542853
Electronic books.
LC Class. No.: TA357.5.F58 / P35 1998eb
Dewey Class. No.: 624.1/71
Fluid-structure interactions. = slender structures and axial flow /. [Volume 1]
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Michael P. Paidoussis.
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Preface. Introduction. Concepts, Definitions and Methods. Pipes Conveying Fluid: Linear Dynamics I. Pipes Conveying Fluid: Linear Dynamics II. Nonlinear and Chaotic Dynamics. Curved Pipes Conveying Fluid. First-Principles Derivation of Equation of Motion. Analytical Evaluation of h2r, c2, and d3r. Destabilization by Damping. Experimental Methods for Elastomer Pipes. Timoshenko Equations and Associated Analysis. Basics of Nonlinear Dynamics. Newtonian Derivation of Nonlinear Equations. Nonlinear Analysis of a Pipe Conveying Fluid. Fractal Dimension. Derivations for Equations in Chapter 6. Matrices for an Extensible Curved Pipe. Subject Index.
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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 techniques This book will prove invaluable to researchers, practitioners, and students in fluid-structure interactions, flow-induced vibrations, and dynamics and vibrations.
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