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Fluid-Structure Interactions. Volume 1: Slender Structures and Axial Flow

معرفی کتاب «Fluid-Structure Interactions. Volume 1: Slender Structures and Axial Flow» نوشتهٔ Michael P. Paidoussis (Auth.)، منتشرشده توسط نشر Academic Press [Imprint] Elsevier Science & Technology Books در سال 2014. این کتاب در 20 صفحه، فرمت pdf، زبان انگلیسی ارائه شده است.

The first of two books concentrating on the dynamics of slender bodies within or containing axial flow, Fluid-Structure Interaction, Volume 1 covers the fundamentals and mechanisms giving rise to flow-induced vibration, with a particular focus on the challenges associated with pipes conveying fluid. This volume has been thoroughly updated to reference the latest developments in the field, with a continued emphasis on the understanding of dynamical behaviour and analytical methods needed to provide long-term solutions and validate the latest computational methods and codes. In this edition, Chapter 7 from Volume 2 has also been moved to Volume 1, meaning that Volume 1 now mainly treats the dynamics of systems subjected to internal flow, whereas in Volume 2 the axial flow is in most cases external to the flow or annular. Provides an in-depth review of an extensive range of fluid-structure interaction topics, with detailed real-world examples and thorough referencing throughout for additional detail. Organized by structure and problem type, allowing you to dip into the sections that are relevant to the particular problem you are facing, with numerous appendices containing the equations relevant to specific problems. Supports development of long-term solutions by focusing on the fundamentals and mechanisms needed to understand underlying causes and operating conditions under which apparent solutions might not prove effective. Content: Fluid-Structure Interactions , Page i Fluid-Structure Interactions , Page iii Copyright , Page iv Preface to the Second Edition , Page ix Preface to the First Edition , Pages xi-xiii Acknowledgements , Page xv Chapter 1 - Introduction , Pages 1-5 Chapter 2 - Concepts, Definitions and Methods in Fluid-Structure Interactions , Pages 7-62 Chapter 3 - Pipes Conveying Fluid: Linear Dynamics I , Pages 63-233 Chapter 4 - Pipes Conveying Fluid: Linear Dynamics II , Pages 235-332 Chapter 5 - Pipes Conveying Fluid: Nonlinear and Chaotic Dynamics , Pages 333-502 Chapter 6 - Curved Pipes Conveying Fluid , Pages 503-549 Chapter 7 - Cylindrical Shells Containing or Immersed in Flow: Basic Dynamics , Pages 551-713 Epilogue , Page 715 Appendix A - A First-Principles Derivation of the Equation of Motion of a Pipe Conveying Fluid , Pages 717-718 Appendix B - Analytical Evaluation of , and , Pages 719-720 Appendix C - Destabilization by Damping: T. Brooke Benjamin’s Work , Pages 721-723 Appendix D - Experimental Methods for Elastomer Pipes , Pages 725-731 Appendix E - The Timoshenko Equations of Motion and Associated Analysis , Pages 733-737 Appendix F - Some of the Basic Methods of Nonlinear Dynamics , Pages 739-757 Appendix G - Newtonian Derivation of the Nonlinear Equations of Motion of a Pipe Conveying Fluid , Pages 759-761 Appendix H - Nonlinear Dynamics Theory Applied to a Pipe Conveying Fluid , Pages 763-772 Appendix I - The Fractal Dimension from the Experimental Pipe-Vibration Signal , Pages 773-778 Appendix J - Detailed Analysis for the Derivation of the Equations of Motion of Chapter 6 , Pages 779-785 Appendix K - Matrices for the Analysis of an Extensible Curved Pipe Conveying Fluid , Pages 787-788 Appendix L - Matrices in Hybrid Analytical/Finite-Element Method of Lakis et al. , Pages 789-790 Appendix M - Anisotropic Shells , Pages 791-792 Appendix N - Nonlinear Motions of a Shell Conveying Fluid , Pages 793-796 Bibliography , Pages 797-849 Index , Pages 851-867 Annotation The first of two books concentrating on the dynamics of slender bodies within or containing axial flow, Fluid-Structure Interaction, Volume 1 covers the fundamentals and mechanisms giving rise to flow-induced vibration, with a particular focus on the challenges associated with pipes conveying fluid. This volume has been thoroughly updated to reference the latest developments in the field, with a continued emphasis on the understanding of dynamical behaviour and analytical methods needed to provide long-term solutions and validate the latest computational methods and codes. In this edition, Chapter 7 from Volume 2 has also been moved to Volume 1, meaning that Volume 1 now mainly treats the dynamics of systems subjected to internal flow, whereas in Volume 2 the axial flow is in most cases external to the flow or annular. Provides an in-depth review of an extensive range of fluid-structure interaction topics, with detailed real-world examples and thorough referencing throughout for additional detail. Organized by structure and problem type, allowing you to dip into the sections that are relevant to the particular problem you are facing, with numerous appendices containing the equations relevant to specific problems. Supports development of long-term solutions by focusing on the fundamentals and mechanisms needed to understand underlying causes and operating conditions under which apparent solutions might not prove effective Fluid-structure interaction (FSI) is the interaction of some movable or deformable structure with an internal or surrounding fluid flow. This book covers the fundamentals and mechanisms giving rise to flow-induced vibration, with a particular focus on the challenges associated with pipes conveying fluid.
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