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Level Set Methods for Fluid-Structure Interaction: Applied Mathematical Sciences, cartea 210

Autor Georges-Henri Cottet, Emmanuel Maitre, Thomas Milcent
en Limba Engleză Hardback – 11 sep 2022
This monograph is devoted to Eulerian models for fluid-structure interaction by applying the original point of view of level set methods.
In the last 15 years, Eulerian models have become popular tools for studying fluid-structure interaction problems. One major advantage compared to more conventional methods such as ALE methods is that they allow the use of a single grid and a single discretization method for the different media. Level set methods in addition provide a general framework to follow the fluid-solid interfaces, to represent the elastic stresses of solids, and to model the contact forces between solids.
This book offers a combination of mathematical modeling, aspects of numerical analysis, elementary codes and numerical illustrations, providing the reader with insights into ​​the applications and performance of these models. Assuming background at the level of a Master’s degree, Level Set Methods for Fluid-Structure Interaction provides researchers in the fields of numerical analysis of PDEs, theoretical and computational mechanics with a basic reference on the topic. Its pedagogical style and organization make it particularly suitable for graduate students and young researchers.


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Specificații

ISBN-13: 9783031086588
ISBN-10: 3031086589
Pagini: 197
Ilustrații: IX, 197 p. 70 illus., 59 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.48 kg
Ediția:1st ed. 2022
Editura: Springer International Publishing
Colecția Springer
Seria Applied Mathematical Sciences

Locul publicării:Cham, Switzerland

Cuprins

1. Level Set methods and Lagrangian interfaces.- 2. Mathematical tools for continuum mechanics.- 3. Interaction of an incompressible fluid with an elastic membrane.- 4. Immersed bodies : the case of elastic bodies.- 5. Immersed bodies : the case of rigid bodies.- 6. Interaction between bodies by the Level Set method.- 7. Appendix.- 8. References.
 

Notă biografică

Georges-Henri Cottet is Professor Emeritus at the University of Grenoble-Alpes and honorary member of the Institut Universitaire de France. A specialist in the numerical analysis of partial differential equations, he is interested in numerical methods applied to fluid mechanics, fluid-structure interaction problems and image processing.

Emmanuel Maitre is Professor at Grenoble INP-UGA. His research focuses on the analysis and numerical simulation of partial differential equations, interface capture methods and numerical optimal transport, with applications in biomechanics and image analysis.

Thomas Milcent is Assistant Professor at Arts et Métiers Bordeaux. His research focuses on numerical methods for fluid-structure interaction and interface transport.


Textul de pe ultima copertă

This monograph is devoted to the study of Eulerian models for fluid-structure interaction from the original point of view of level set methods.
In the last 15 years, Eulerian models have become popular tools for studying fluid-structure interaction problems. One major advantage compared to more conventional methods such as ALE methods is that they allow the use of a single grid and a single discretization method for the different media. Level set methods in addition provide a general framework to follow the fluid-solid interfaces, to represent the elastic stresses of solids, and to model the contact forces between solids.
This book offers a combination of mathematical modeling, aspects of numerical analysis, elementary codes and numerical illustrations, providing the reader with insights into ​​the applications and performance of these models. Assuming background at the level of a Master’s degree, Level Set Methods for Fluid-Structure Interaction provides researchers in the fields of numerical analysis of PDEs, theoretical and computational mechanics with a basic reference on the topic. Its pedagogical style and organization make it particularly suitable for graduate students and young researchers.






Caracteristici

A self-contained introduction covering both theoretical and numerical aspects Provides numerical illustrations of a variety of fluid-structure interaction problems Includes codes for hands-on experience of the methods in simple problems