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Numerical Methods for Eulerian and Lagrangian Conservation Laws: Frontiers in Mathematics

Autor Bruno Després
en Limba Engleză Paperback – 20 iul 2017
This book focuses on the interplay between Eulerian and Lagrangian conservation laws for systems that admit physical motivation and originate from continuum mechanics. Ultimately, it highlights what is specific to and beneficial in the Lagrangian approach and its numerical methods. The two first chapters present a selection of well-known features of conservation laws and prepare readers for the subsequent chapters, which are dedicated to the analysis and discretization of Lagrangian systems.
The text is at the frontier of applied mathematics and scientific computing and appeals to students and researchers interested in Lagrangian-based computational fluid dynamics. It also serves as an introduction to the recent corner-based Lagrangian finite volume techniques.
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Specificații

ISBN-13: 9783319503547
ISBN-10: 3319503545
Pagini: 348
Ilustrații: XVII, 349 p. 103 illus., 3 illus. in color.
Dimensiuni: 168 x 240 mm
Greutate: 6.16 kg
Ediția:1st ed. 2017
Editura: Springer International Publishing
Colecția Birkhäuser
Seria Frontiers in Mathematics

Locul publicării:Cham, Switzerland

Cuprins

Models.- Conservation laws.- Systems and Lagrangian systems.- Numerical discretization.- Starting from the mesh.

Recenzii

“The book is very fluently written and easily digested. … Numerous illustrations are given to demonstrate the efficiency of the numerical methods. … I strongly recommend this book, not only to the mathematically inclined CFD practitioner, but also as illuminating supplementary material for students learning the numerical analysis and the foundations of hyperbolic conservation laws.” (Tore Flåtten, Mathematical Reviews, August, 2018)​

Textul de pe ultima copertă

This book focuses on the interplay between Eulerian and Lagrangian conservation laws for systems that admit physical motivation and originate from continuum mechanics. Ultimately, it highlights what is specific to and beneficial in the Lagrangian approach and its numerical methods. The two first chapters present a selection of well-known features of conservation laws and prepare readers for the subsequent chapters, which are dedicated to the analysis and discretization of Lagrangian systems.
The text is at the frontier of applied mathematics and scientific computing and appeals to students and researchers interested in Lagrangian-based computational fluid dynamics. It also serves as an introduction to the recent corner-based Lagrangian finite volume techniques.

Caracteristici

Focuses on the mathematical interplay between Eulerian and Lagrangian formulations and its significance for numerical methods Explains the structure of modern corner-based Lagrangian solvers Details the linear-quadratic structure of Lagrangian fluxes originating from continuum mechanics