Computational mechanics of fluid-structure interaction : computational methods for coupled fluid-structure analysis
Language: English Publication details: Springer 2022 SingaporeDescription: xv, 329pISBN:- 9789811653544
- 620.1064 J199c
Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
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PK Kelkar Library, IIT Kanpur | General Stacks | 620.1064 J199c (Browse shelf(Opens below)) | Checked out to Kumar Gaurav (S2010527100) | 14/07/2025 | A185962 |
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620.1064 In8f FLOW VISUALIZATION | 620.1064 In8s Sixth IUTAM Symposium on Laminar-Turbulent Transition | 620.1064 J175f FLUID TRANSIENTS IN HYDROELECTRIC ENGINEERING PRACTICE | 620.1064 J199c Computational mechanics of fluid-structure interaction | 620.1064 J56n Numerical techniques for direct and large-eddy simulations | 620.1064 J774f FUNDAMENTALS OF TWO-FLUID DYNAMICS | 620.1064 J774f FUNDAMENTALS OF TWO-FLUID DYNAMICS |
This book is intended to provide a compilation of the state-of-the-art numerical methods for nonlinear fluid-structure interaction using the moving boundary Lagrangian-Eulerian formulation. Single and two-phase viscous incompressible fluid flows are considered with the increasing complexity of structures ranging from rigid-body, linear elastic and nonlinear large deformation to fully-coupled flexible multibody system. This book is unique with regard to computational modeling of such complex fluid-structure interaction problems at high Reynolds numbers, whereby various coupling techniques are introduced and systematically discussed. The techniques are demonstrated for large-scale practical problems in aerospace and marine/offshore engineering.
This book also provides a comprehensive understanding of underlying unsteady physics and coupled mechanical aspects of the fluid-structure interaction from a computational point of view. Using the body-fitted and moving mesh formulations, the physical insights associated with structure-to-fluid mass ratios (i.e., added mass effects), Reynolds number, large structural deformation, free surface, and other interacting physical fields are covered. The book includes the basic tools necessary to build the concepts required for modeling such coupled fluid-structure interaction problems, thus exposing the reader to advanced topics of multiphysics and multiscale phenomena.
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