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

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

Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical
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Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications Hardback - 2019

by Xing, Jing Tang

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Academic Press, 2019-09-03. 1. hardcover. New. 8.50x1.44x11.00. Buy with confidence. Excellent Customer Service & Return policy.
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Details

  • Title Fluid-Solid Interaction Dynamics: Theory, Variational Principles, Numerical Methods, and Applications
  • Author Xing, Jing Tang
  • Binding Hardback
  • Edition 1
  • Condition New
  • Pages 680
  • Volumes 1
  • Language ENG
  • Publisher Academic Press
  • Publication date 2019-09-03
  • Features Bibliography, Index
  • Bookseller's Inventory # DADAX0128193522
  • ISBN 9780128193525 / 0128193522
  • Weight 4.07 lbs (1.85 kg)
  • Dimensions 11 x 8.5 x 1.44 in (27.94 x 21.59 x 3.66 cm)
  • Size 8.50x1.44x11.00
  • Category Science
  • Library of Congress subjects Fluid-structure interaction
  • Library of Congress Catalogue Number 2020302949
  • Dewey Decimal Code 620.106
  • Quantity available 1

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

From the publisher

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.

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