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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - Bo-nan Jiang
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Bo-nan Jiang:
The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - gebrauchtes Buch

ISBN: 9783642083679

ID: 9783642083679

This is the first book devoted to the least-squares finite element method (LSFEM), which is a simple, efficient and robust technique for the numerical solution of partial differential equations. The book demonstrates that the LSFEM can solve a broad range of problems in fluid dynamics and electromagnetics with only one mathematical/computational formulation. The book shows that commonly adopted special treatments in computational fluid dynamics and computational electromagnetics, such as This is the first book devoted to the least-squares finite element method (LSFEM), which is a simple, efficient and robust technique for the numerical solution of partial differential equations. The book demonstrates that the LSFEM can solve a broad range of problems in fluid dynamics and electromagnetics with only one mathematical/computational formulation. The book shows that commonly adopted special treatments in computational fluid dynamics and computational electromagnetics, such as upwinding, numerical dissipation, staggered grid, non-equal-order elements, operator splitting and preconditioning, edge elements, vector potential, and so on, are unnecessary. This book introduces the basic theory of the least-squares method for first-order PDE systems, particularly the div-curl system and the div-curl-grad system. It is applied to the study of permissible boundary conditions for the incompressible Navier-Stokes equations, to show that the divergence equations in the Maxwell equations are not redundant, and to derive equivalent second-order versions of the Navier-Stokes equations and the Maxwell equations. This book covers diverse applications such as incompressible viscous flows, rotational inviscid flows, low- or high-Mach-number compressible flows, two-fluid flows, convective flows, and scattering waves. Textbooks New, Books~~Science~~Physics~~Mathematical & Computational, Least-Squares-Finite-Element-Method~~Bo-nan-Jiang, 999999999, The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics, Bo-nan Jiang, 3642083676, Springer Berlin Heidelberg, , , , , Springer Berlin Heidelberg

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The Least-Squares Finite Element Method : Theory and Applications in Computational Fluid Dynamics and Electromagnetics - Bo-nan Jiang
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Bo-nan Jiang:
The Least-Squares Finite Element Method : Theory and Applications in Computational Fluid Dynamics and Electromagnetics - gebrauchtes Buch

ISBN: 3642083676

ID: 10923887

Here is a comprehensive introduction to the least-squares finite element method (LSFEM) for numerical solution of PDEs. It covers the theory for first-order systems, particularly the div-curl and the div-curl-grad system. Then LSFEM is applied systematically to permissible boundary conditions for the incompressible Navier-Stokes equations, to show that the divergence equations in the Maxwell equations are not redundant, and to derive equivalent second-order versions of the Navier-Stokes equations and the Maxwell equations. LSFEM is simple, efficient and robust, and can solve a wide range of problems in fluid dynamics and electromagnetics, including incompressible viscous flows, rotational inviscid flows, low-Mach-number compressible flows, two-fluid and convective flows, scattering waves, etc. math,mathematics,science,science and math,science and scientists,science and technology Mathematics, Springer

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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - Bo-nan Jiang
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Bo-nan Jiang:
The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - neues Buch

ISBN: 9783642083679

ID: 978364208367

This is the first monograph on the subject, providing a comprehensive introduction to the LSFEM method for numerical solution of PDEs. LSFEM is simple, efficient and robust, and can solve a wide range of problems in fluid dynamics and electromagnetics. Bo-nan Jiang, Books, Science and Nature, The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics Books>Science and Nature, Springer Berlin Heidelberg

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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - Bo-nan Jiang
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Bo-nan Jiang:
The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics - Taschenbuch

ISBN: 9783642083679

ID: 9783642083679

The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics Least-Squares-Finite-Element-Method~~Bo-nan-Jiang Science>Physics>Physics Paperback, Springer Berlin Heidelberg

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The Least-Squares Finite Element Method - Bo-nan Jiang
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Bo-nan Jiang:
The Least-Squares Finite Element Method - Taschenbuch

2010, ISBN: 9783642083679

Gebundene Ausgabe, ID: 15123741

Theory and Applications in Computational Fluid Dynamics and Electromagnetics, Softcover reprint of hardcover 1st ed. 1998, Softcover, Buch, [PU: Springer Berlin]

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Details zum Buch
The Least-Squares Finite Element Method
Autor:

Bo-nan Jiang

Titel:
ISBN-Nummer:

This is the first monograph on the subject, providing a comprehensive introduction to the LSFEM method for numerical solution of PDEs. LSFEM is simple, efficient and robust, and can solve a wide range of problems in fluid dynamics and electromagnetics.

Detailangaben zum Buch - The Least-Squares Finite Element Method


EAN (ISBN-13): 9783642083679
ISBN (ISBN-10): 3642083676
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2010
Herausgeber: Springer Berlin

Buch in der Datenbank seit 01.10.2011 16:41:41
Buch zuletzt gefunden am 27.11.2017 21:18:54
ISBN/EAN: 9783642083679

ISBN - alternative Schreibweisen:
3-642-08367-6, 978-3-642-08367-9


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