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Fluid-Structure Interactions: Volume 2
Slender Structures and Axial Flow

The leading reference on fluid-structure interactions relating to shells, cylinders and plates by a renowned expert in the field

Michael P. Paidoussis (Author)

9780123973337

Hardback, published 8 January 2016

942 pages
23.4 x 19 x 4.5 cm, 1.47 kg

The second of two volumes concentrating on the dynamics of slender bodies within or containing axial flow, Volume 2 covers fluid-structure interactions relating to shells, cylinders and plates containing or immersed in axial flow, as well as slender structures subjected to annular and leakage flows.

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, with increased coverage of computational techniques and numerical methods, particularly for the solution of non-linear three-dimensional problems.

1.Shells with flow: Advanced topics 2. Cylinders in axial flow I3. Cylinders in axial flow II4. Towed and self-propelled cylinders5. Clustered cylinders in axial flow6. Plates in axial flow7. Annular- and leakage- flow-induced instabilitiesAppendix A: Coaxial shells: Some details Appendix B: Effect of viscosity in RotofluidelasticityAppendix C: Flutter of collapsible tubes conveying fluidAppendix D: Viscous force coefficients, cylinders in axial flowAppendix E: Random-force response of a cylinder in axial flowAppendix F: Nonlinear equations for a cylinder in axial flowAppendix G: Articulated cylinders in axial flowAppendix H: Added mass matric by FEMAppendix I: The viscous coupling matrixAppendix J: Flexibility interconnected cylinders in axial flowAppendix K: Vibration of clustersAppendix L: Some details for 1-D leakage flow analyses

Subject Areas: Civil engineering, surveying & building [TN], Flow, turbulence, rheology [TGMF3], Mechanical engineering [TGB], Fluid mechanics [PHDF]

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