Nodal Discontinuous Galerkin Methods

Nodal Discontinuous Galerkin Methods
Title Nodal Discontinuous Galerkin Methods PDF eBook
Author Jan S. Hesthaven
Publisher Springer Science & Business Media
Pages 502
Release 2007-12-20
Genre Mathematics
ISBN 0387720677

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This book offers an introduction to the key ideas, basic analysis, and efficient implementation of discontinuous Galerkin finite element methods (DG-FEM) for the solution of partial differential equations. It covers all key theoretical results, including an overview of relevant results from approximation theory, convergence theory for numerical PDE’s, and orthogonal polynomials. Through embedded Matlab codes, coverage discusses and implements the algorithms for a number of classic systems of PDE’s: Maxwell’s equations, Euler equations, incompressible Navier-Stokes equations, and Poisson- and Helmholtz equations.

Finite Element and Discontinuous Galerkin Methods for Transient Wave Equations

Finite Element and Discontinuous Galerkin Methods for Transient Wave Equations
Title Finite Element and Discontinuous Galerkin Methods for Transient Wave Equations PDF eBook
Author Gary Cohen
Publisher Springer
Pages 393
Release 2016-08-05
Genre Technology & Engineering
ISBN 9401777616

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This monograph presents numerical methods for solving transient wave equations (i.e. in time domain). More precisely, it provides an overview of continuous and discontinuous finite element methods for these equations, including their implementation in physical models, an extensive description of 2D and 3D elements with different shapes, such as prisms or pyramids, an analysis of the accuracy of the methods and the study of the Maxwell’s system and the important problem of its spurious free approximations. After recalling the classical models, i.e. acoustics, linear elastodynamics and electromagnetism and their variational formulations, the authors present a wide variety of finite elements of different shapes useful for the numerical resolution of wave equations. Then, they focus on the construction of efficient continuous and discontinuous Galerkin methods and study their accuracy by plane wave techniques and a priori error estimates. A chapter is devoted to the Maxwell’s system and the important problem of its spurious-free approximations. Treatment of unbounded domains by Absorbing Boundary Conditions (ABC) and Perfectly Matched Layers (PML) is described and analyzed in a separate chapter. The two last chapters deal with time approximation including local time-stepping and with the study of some complex models, i.e. acoustics in flow, gravity waves and vibrating thin plates. Throughout, emphasis is put on the accuracy and computational efficiency of the methods, with attention brought to their practical aspects.This monograph also covers in details the theoretical foundations and numerical analysis of these methods. As a result, this monograph will be of interest to practitioners, researchers, engineers and graduate students involved in the numerical simulationof waves.

Scientific Computing in Electrical Engineering SCEE 2010

Scientific Computing in Electrical Engineering SCEE 2010
Title Scientific Computing in Electrical Engineering SCEE 2010 PDF eBook
Author Bastiaan Michielsen
Publisher Springer Science & Business Media
Pages 441
Release 2012-01-06
Genre Mathematics
ISBN 3642224539

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Selected from papers presented at the 8th Scientific Computation in Electrical Engineering conference in Toulouse in 2010, the contributions to this volume cover every angle of numerically modelling electronic and electrical systems, including computational electromagnetics, circuit theory and simulation and device modelling. On computational electromagnetics, the chapters examine cutting-edge material ranging from low-frequency electrical machine modelling problems to issues in high-frequency scattering. Regarding circuit theory and simulation, the book details the most advanced techniques for modelling networks with many thousands of components. Modelling devices at microscopic levels is covered by a number of fundamental mathematical physics papers, while numerous papers on model order reduction help engineers and systems designers to bring their modelling of industrial-scale systems within the reach of present-day computational power. Complementing these more specific papers, the volume also contains a selection of mathematical methods which can be used in any application domain.

Frontiers in Numerical Analysis - Durham 2010

Frontiers in Numerical Analysis - Durham 2010
Title Frontiers in Numerical Analysis - Durham 2010 PDF eBook
Author James Blowey
Publisher Springer Science & Business Media
Pages 298
Release 2012-01-10
Genre Mathematics
ISBN 3642239145

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This book contains detailed lecture notes on four topics at the forefront of current research in computational mathematics. Each set of notes presents a self-contained guide to a current research area and has an extensive bibliography. In addition, most of the notes contain detailed proofs of the key results. The notes start from a level suitable for first year graduate students in applied mathematics, mathematical analysis or numerical analysis, and proceed to current research topics. The reader should therefore be able to gain quickly an insight into the important results and techniques in each area without recourse to the large research literature. Current (unsolved) problems are also described and directions for future research are given. This book is also suitable for professional mathematicians who require a succint and accurate account of recent research in areas parallel to their own, and graduates in mathematical sciences.

Proceedings of the 10th International Conference on Computing Methods in Applied Sciences and Engineering, Paris (Le Vésinet), France, February 11-14, 1992

Proceedings of the 10th International Conference on Computing Methods in Applied Sciences and Engineering, Paris (Le Vésinet), France, February 11-14, 1992
Title Proceedings of the 10th International Conference on Computing Methods in Applied Sciences and Engineering, Paris (Le Vésinet), France, February 11-14, 1992 PDF eBook
Author Institut national de recherche en informatique et en automatique (France)
Publisher
Pages 870
Release 1991
Genre Science
ISBN

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The proceedings of the 10th International Conference on [title], organized by the Institut National de Recherche en Informatique et en Automatique (France), and held in Paris, February 1992. The 67 papers (including nine invited lectures) describe results fundamental to scientific computing, in the

Eddy Current Approximation of Maxwell Equations

Eddy Current Approximation of Maxwell Equations
Title Eddy Current Approximation of Maxwell Equations PDF eBook
Author Ana Alonso Rodriguez
Publisher Springer Science & Business Media
Pages 355
Release 2010-11-22
Genre Mathematics
ISBN 8847015065

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This book deals with the mathematical analysis and the numerical approximation of eddy current problems in the time-harmonic case. It takes into account all the most used formulations, placing the problem in a rigorous functional framework.

Mathematical Aspects of Discontinuous Galerkin Methods

Mathematical Aspects of Discontinuous Galerkin Methods
Title Mathematical Aspects of Discontinuous Galerkin Methods PDF eBook
Author Daniele Antonio Di Pietro
Publisher Springer Science & Business Media
Pages 392
Release 2011-11-03
Genre Mathematics
ISBN 3642229808

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This book introduces the basic ideas to build discontinuous Galerkin methods and, at the same time, incorporates several recent mathematical developments. The presentation is to a large extent self-contained and is intended for graduate students and researchers in numerical analysis. The material covers a wide range of model problems, both steady and unsteady, elaborating from advection-reaction and diffusion problems up to the Navier-Stokes equations and Friedrichs' systems. Both finite element and finite volume viewpoints are exploited to convey the main ideas underlying the design of the approximation. The analysis is presented in a rigorous mathematical setting where discrete counterparts of the key properties of the continuous problem are identified. The framework encompasses fairly general meshes regarding element shapes and hanging nodes. Salient implementation issues are also addressed.