Fluid-Structure Interactions, Volume 2

Michael P. Paidoussis

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Table of contents
  • Cover
  • FLUID–STRUCTURE INTERACTIONS: SLENDER STRUCTURES AND AXIAL FLOWiii
  • Copyright Pageiv
  • Contentsv
  • Prefacexiii
  • Artwork Acknowledgementsxvii
  • Chapter 7. Thin Shells Containing or Immersed in Flow573
  • 7.1 Introductory Remarks573
  • 7.2 General Dynamical Behaviour574
  • 7.3 Refinements and Diversification612
  • 7.4 Wave Propagation and Acoustic Coupling652
  • 7.5 Viscous and Confinement Effects670
  • 7.6 Swirling Flow and Rotofluidelasticity696
  • 7.7 Turbulence-Induced Vibration710
  • 7.8 Nonlinear Dynamics723
  • 7.9 Pliable Shells745
  • 7.10 Applications781
  • 7.11 Concluding remarks786
  • Chapter 8. Solitary Cylindrical Structures in Axial Flow787
  • 8.1 Introduction787
  • 8.2 Linear Equations of Motion789
  • 8.3 Linear Dynamics802
  • 8.4 Small-Amplitude Flow-Induced Vibration858
  • 8.5 Tapered Cylinders in Axial Flow885
  • 8.6 Concurrent Internal and External Flow898
  • 8.7 Parametric Resonances908
  • 8.8 Complex Support Conditions922
  • 8.9 Towed and Self-Propelled Cylinders926
  • 8.10 Nonlinear Equations of Motion971
  • 8.11 Nonlinear Dynamics988
  • 8.12 Articulated and Pendular Systems1003
  • 8.13 Practical Applications1024
  • Chapter 9. Clustered Cylinders in Axial Flow1033
  • 9.1 Introduction1033
  • 9.2 Hydrodynamic Coupling1033
  • 9.3 Dynamics of Clustered Cylinders in Flow1054
  • 9.4 Flow-Induced Vibrations1097
  • 9.5 Strings of Clusters1127
  • 9.6 Summary and Conclusion1134
  • Chapter 10. Plates in Axial Flow1137
  • 10.1 Introduction1137
  • 10.2 General Analysis1139
  • 10.3 Representative Studies1161
  • 10.4 Concluding Remarks1220
  • Chapter 11. Annular- and Leakage-Flow-Induced Instabilities1221
  • 11.1 Introduction1221
  • 11.2 Major Engineering Problem Cases1225
  • 11.3 Vibrations in Narrow Annuli1233
  • 11.4 1-D Leakage Flows1249
  • 11.5 Cylinders in Annular Flows1269
  • 11.6 Rotating Cylinders in Dense Fluid1355
  • 11.7 Coaxial Shells1371
  • 11.8 Miscellaneous Applications1419
  • Epilogue1421
  • Appendices1423
  • Appendix L. Matrices in Hybrid Analytical/Finite-Element Method of Lakis et al.1423
  • L.1 Matrices for a cylindrical shell in vacuo1423
  • L.2 Matrices associated with fluid flow in a cylindrical shell1424
  • L.3 Matrices associated with fluid flow in a conical shell1424
  • Appendix M. Anisotropic Shells1428
  • Appendix N. Effect of Viscosity in Rotofluidelasticity1430
  • Appendix O. Nonlinear Motions of a Shell Conveying Fluid1433
  • O.1 The particular solution, Fp1433
  • O.2 The discretized equations of motion1434
  • Appendix P. Flutter of Collapsible Tubes Conveying Fluid1437
  • P.1 Bibliography1437
  • P.2 Analytical models1443
  • Appendix Q. Viscous Force Coefficients for Cylinders in Axial Flow1448
  • Q.1 The longitudinal viscous coefficient CT1448
  • Q.2 The normal viscous coefficient CN1449
  • Q.3 The zero-flow normal coefficient CD1451
  • Q.4 The base drag coefficient Cb1452
  • Appendix R. Response to Arbitrary Force Field of a Cylinder in Axial Flow1453
  • Appendix S. The Equations of Motion of Articulated Cylinders in Axial Flow1457
  • S.1 Self-propelled system1457
  • S.2 Towed system1458
  • S.3 System with a gripped nose1459
  • Appendix T. The Nonlinear Equations of Motion of a Cylinder in Axial Flow1460
  • T.1 The inviscid hydrodynamic force FA(X, T )1460
  • T.2 Tapered free-end boundary conditions1465
  • T.3 Axially extensible cylinders1468
  • T.4 Correction to equations for a fluid-conveying pipe with supported ends1473
  • Appendix U. Added mass matrix by FEM1474
  • Appendix V. The Viscous Coupling Matrix1477
  • Appendix W. Spring Constants Used in the Calculations of Section 9.3.51480
  • Appendix X. Flow-Induced Vibration of Clusters: Some Expressions in Detail1482
  • X.1 Curve-fitted expressions for Kij,θ(ω)1482
  • X.2 Expressions for Kln,ξ (ω)1483
  • Appendix Y. Some Details for 1-D Leakage Flow Analyses1484
  • Y.1 Mulcahy’s (1988) 1-d.o.f. analysis1484
  • Y.2 Inada & Hayama’s (1990a) analysis1485
  • Appendix Z. Coaxial Shells: Some Details1488
  • Z.1 Generalized forces; inviscid incompressible flows1488
  • Z.2 Numerical evaluation of the generalized inviscid forces1489
  • Z.3 The mean annular viscous pressure field1490
  • Z.4 Model for cantilevered shell with annular flow1491
  • Z.5 Velocity profile and viscosity in annular flow1493
  • Z.6 Solution of Navier–Stokes equations1494
  • Appendix Ω. Recent Publications Related to Volume 11497
  • Ω.1 Fundamentals and related topics1497
  • Ω.2 Pipes with supported ends1498
  • Ω.3 Cantilevered pipes1499
  • Ω.4 Pipes with pulsating flow; parametric resonances1500
  • Ω.5 Risers and ocean mining systems1500
  • Ω.6 Divers systems and applications1501
  • Ω.7 Corrigenda to Volume 11501
  • References1503
  • Index1573
Book details
  • Vendor Elsevier S & T
  • SKU 9780125443616
  • ISBN-13 9780125443616
  • Author Michael P. Paidoussis
  • Category Technology & Engineering
  • Subject Aeronautics & Astronautics

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The text is richly illustrated, lightly written and more wide-ranging than Volume 1. A comprehensive treatment of fluid-structure interactions involving axial flow and slender structures, such as piping, human veins, aircraft, nuclear reactor fuel and submarine skins. The emphasis is on fundamentals, particularly on the physical understanding and underlying mechanisms, as well as on applications.

This book will be invaluable for researchers, professional engineers, applied scientists and students involved in the design, study or operation or systems involving fluid flow, internal or external structures, wind or ocean currents

Emphasizes real-world analysis of problems encountered in the field and presents their solutions

A practical and thorough literature review of over 1400 references, an excellent reference document

Bridges the gap between academic researchers and practitioners in industry