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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics Hardback - 1998
by Bo-Nan Jiang
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From the publisher
From the rear cover
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.
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.
Details
- Title The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics
- Author Bo-Nan Jiang
- Binding Hardback
- Edition [ Edition: first
- Pages 418
- Volumes 1
- Language ENG
- Publisher Springer
- Publication date 1998-06-22
- Illustrated Yes
- Features Illustrated
- ISBN 9783540639343 / 3540639349
- Weight 1.74 lbs (0.79 kg)
- Dimensions 9.21 x 6.14 x 1 in (23.39 x 15.60 x 2.54 cm)
- Category Technology & Industrial Arts
- Library of Congress Catalogue Number 97051980
- Dewey Decimal Code 532.051
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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics (Scientific Computation)
by Jiang, Bo-nan
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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics (Scientific Computation)
by Jiang, Bo-nan
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- Hardback
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- Hardcover
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The Least-Squares Finite Element Method : Theory and Applications in Computational Fluid Dynamics and Electromagnetics
by Bo-nan Jiang
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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics (Scientific Computation)
by Jiang, Bo-nan
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- 1998
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The Least-Squares Finite Element Method: Theory and Applications in Computational Fluid Dynamics and Electromagnetics (Scientific Computation)
by Jiang, Bo-nan
- New
- Hardback
- Condition
- New
- Edition
- 1998
- Binding
- Hardcover
- ISBN 10 / ISBN 13
- 9783540639343 / 3540639349
- Quantity available
- 1
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