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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.
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.
Dr. Vaibhav Joshi is currently an Assistant Professor in the Department of Mechanical Engineering at Birla Institute of Technology and Science (BITS) Pilani, K. K. Birla Goa Campus, Goa, India. His research focuses on high-fidelity computational modeling of fluid-structure interaction. Prior to his current association with BITS, he was a postdoctoral research fellow in the Department of Mechanical Engineering at The University of British Columbia (UBC), Vancouver, Canada. He was in-charge of the Computational Multiphysics Laboratory at UBC and worked on developing flexible multibody fluid-structure interaction framework for bio-inspired flying vehicles. Before joining as a post-doc, he carried out his doctoral studies at the National University of Singapore (NUS) and worked as a research engineer at the Keppel-NUS Corporate Laboratory. There, he developed a computational framework to model two-phase fluid-structure interaction, motivated by the coupled offshore vessel-riser system subjected to turbulent ocean current and free surface waves. He received his Bachelor of Technology degree in Mechanical Engineering from Vellore Institute of Technology University, Vellore, India.
Presents high-fidelity modeling of fluid-structure interaction from an advanced computational physics viewpoint
Discusses spatial and temporal coupling techniques using body-fitted Eulerian-Lagrangian and variational formulations
Introduces two-phase turbulent fluid flows interacting with flexible multibody structural system by partitioned approach
Chapter 1 - Introduction: A Computational Approach.- Chapter 2 - Equilibrium, Kinematics and Balance Laws.- Chapter 3 - Fluid-Structure Equations with Body-Fitted Interface.- Chapter 4 - Variational and Stabilized Finite Element Methods.- Chapter 5 - Fluid-Structure Interaction: Variational Formulation.- Chapter 6 - Quasi-Monolithic Fluid-Structure Formulation.- Chapter 7 - Partitioned Fluid-Structure Interaction Methods.- Chapter 8 - Two-Phase Fluid-Structure Interaction.- Chapter 9 - Flexible Multibody Fluid-Structure Interaction.- Chapter 10 - Turbulence Modeling in Fluid-Structure Interaction.
| Erscheinungsjahr: | 2022 |
|---|---|
| Fachbereich: | Fertigungstechnik |
| Genre: | Importe, Technik |
| Rubrik: | Naturwissenschaften & Technik |
| Medium: | Taschenbuch |
| Inhalt: |
xv
329 S. 53 s/w Illustr. 129 farbige Illustr. 329 p. 182 illus. 129 illus. in color. |
| ISBN-13: | 9789811653575 |
| ISBN-10: | 9811653577 |
| Sprache: | Englisch |
| Einband: | Kartoniert / Broschiert |
| Autor: |
Jaiman, Rajeev Kumar
Joshi, Vaibhav |
| Hersteller: |
Springer
Springer Singapore |
| Verantwortliche Person für die EU: | Springer Verlag GmbH, Tiergartenstr. 17, D-69121 Heidelberg, juergen.hartmann@springer.com |
| Maße: | 235 x 155 x 19 mm |
| Von/Mit: | Rajeev Kumar Jaiman (u. a.) |
| Erscheinungsdatum: | 30.11.2022 |
| Gewicht: | 0,528 kg |