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portada Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications
Type
Physical Book
Publisher
Year
2019
Language
English
Pages
680
Format
Hardcover
ISBN13
9780128193525
Edition No.
1

Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications

Jing Tang Xing (Author) · Academic Press · Hardcover

Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications - Jing Tang Xing

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Synopsis "Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications"

Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods and Applications gives a comprehensive accounting of fluid-solid interaction dynamics, including theory, numerical methods and their solutions for various FSI problems in engineering. The title provides the fundamental theories, methodologies and results developed in the application of FSI dynamics. Four numerical approaches that can be used with almost all integrated FSI systems in engineering are presented. Methods are linked with examples to illustrate results. In addition, numerical results are compared with available experiments or numerical data in order to demonstrate the accuracy of the approaches and their value to engineering applications. The title gives readers the state-of-the-art in theory, variational principles, numerical modeling and applications for fluid-solid interaction dynamics. Readers will be able to independently formulate models to solve their engineering FSI problems using information from this book.Presents the state-of-the-art in fluid-solid interaction dynamics, providing theory, method and resultsTakes an integrated approach to formulate, model and simulate FSI problems in engineeringIllustrates results with concrete examplesGives four numerical approaches and related theories that are suitable for almost all integrated FSI systemsProvides the necessary information for bench scientists to independently formulate, model, and solve physical FSI problems in engineering

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