Multi-Grid Methods and Applications
Title | Multi-Grid Methods and Applications PDF eBook |
Author | Wolfgang Hackbusch |
Publisher | Springer Science & Business Media |
Pages | 391 |
Release | 2013-03-09 |
Genre | Mathematics |
ISBN | 3662024276 |
Multi-grid methods are the most efficient tools for solving elliptic boundary value problems. The reader finds here an elementary introduction to multi-grid algorithms as well as a comprehensive convergence analysis. One section describes special applications (convection-diffusion equations, singular perturbation problems, eigenvalue problems, etc.). The book also contains a complete presentation of the multi-grid method of the second kind, which has important applications to integral equations (e.g. the "panel method") and to numerous other problems. Readers with a practical interest in multi-grid methods will benefit from this book as well as readers with a more theoretical interest.
A Multigrid Tutorial
Title | A Multigrid Tutorial PDF eBook |
Author | William L. Briggs |
Publisher | SIAM |
Pages | 318 |
Release | 2000-07-01 |
Genre | Mathematics |
ISBN | 9780898714623 |
Mathematics of Computing -- Numerical Analysis.
Multigrid Methods
Title | Multigrid Methods PDF eBook |
Author | Ulrich Trottenberg |
Publisher | Academic Press |
Pages | 652 |
Release | 2001 |
Genre | Mathematics |
ISBN | 9780127010700 |
Mathematics of Computing -- Numerical Analysis.
Multigrid Techniques
Title | Multigrid Techniques PDF eBook |
Author | Achi Brandt |
Publisher | SIAM |
Pages | 239 |
Release | 2011-01-01 |
Genre | Mathematics |
ISBN | 9781611970753 |
This classic text presents the best practices of developing multigrid solvers for large-scale computational problems in science and engineering. By representing a problem at multiple scales and employing suitable interscale interactions, multigrid avoids slowdown due to stiffness and reduces the computational cost of classical algorithms by orders of magnitude. Starting from simple examples, this book guides the reader through practical stages for developing reliable multigrid solvers, methodically supported by accurate performance predictors. The revised edition presents discretization and fast solution of linear and nonlinear partial differential systems; treatment of boundary conditions, global constraints and singularities; grid adaptation, high-order approximations, and system design optimization; applications to fluid dynamics, from simple models to advanced systems; new quantitative performance predictors, a MATLAB sample code, and more. Readers will also gain access to the Multigrid Guide 2.0 Web site, where updates and new developments will be continually posted, including a chapter on Algebraic Multigrid.
An Introduction to Multigrid Methods
Title | An Introduction to Multigrid Methods PDF eBook |
Author | Pieter Wesseling |
Publisher | R.T. Edwards, Inc. |
Pages | 300 |
Release | 2004 |
Genre | Mathematics |
ISBN |
Introduces the principles, techniques, applications and literature of multigrid methods. Aimed at an audience with non-mathematical but computing-intensive disciplines and basic knowledge of analysis, partial differential equations and numerical mathematics, it is packed with helpful exercises, examples and illustrations.
Practical Fourier Analysis for Multigrid Methods
Title | Practical Fourier Analysis for Multigrid Methods PDF eBook |
Author | Roman Wienands |
Publisher | CRC Press |
Pages | 235 |
Release | 2004-10-28 |
Genre | Mathematics |
ISBN | 1420034995 |
Before applying multigrid methods to a project, mathematicians, scientists, and engineers need to answer questions related to the quality of convergence, whether a development will pay out, whether multigrid will work for a particular application, and what the numerical properties are. Practical Fourier Analysis for Multigrid Methods uses a detaile
Multigrid Finite Element Methods for Electromagnetic Field Modeling
Title | Multigrid Finite Element Methods for Electromagnetic Field Modeling PDF eBook |
Author | Yu Zhu |
Publisher | John Wiley & Sons |
Pages | 438 |
Release | 2006-03-10 |
Genre | Science |
ISBN | 0471786373 |
This is the first comprehensive monograph that features state-of-the-art multigrid methods for enhancing the modeling versatility, numerical robustness, and computational efficiency of one of the most popular classes of numerical electromagnetic field modeling methods: the method of finite elements. The focus of the publication is the development of robust preconditioners for the iterative solution of electromagnetic field boundary value problems (BVPs) discretized by means of finite methods. Specifically, the authors set forth their own successful attempts to utilize concepts from multigrid and multilevel methods for the effective preconditioning of matrices resulting from the approximation of electromagnetic BVPs using finite methods. Following the authors' careful explanations and step-by-step instruction, readers can duplicate the authors' results and take advantage of today's state-of-the-art multigrid/multilevel preconditioners for finite element-based iterative electromagnetic field solvers. Among the highlights of coverage are: * Application of multigrid, multilevel, and hybrid multigrid/multilevel preconditioners to electromagnetic scattering and radiation problems * Broadband, robust numerical modeling of passive microwave components and circuits * Robust, finite element-based modal analysis of electromagnetic waveguides and cavities * Application of Krylov subspace-based methodologies for reduced-order macromodeling of electromagnetic devices and systems * Finite element modeling of electromagnetic waves in periodic structures The authors provide more than thirty detailed algorithms alongside pseudo-codes to assist readers with practical computer implementation. In addition, each chapter includes an applications section with helpful numerical examples that validate the authors' methodologies and demonstrate their computational efficiency and robustness. This groundbreaking book, with its coverage of an exciting new enabling computer-aided design technology, is an essential reference for computer programmers, designers, and engineers, as well as graduate students in engineering and applied physics.