Higher-Order Numerical Methods for Transient Wave Equations
Title | Higher-Order Numerical Methods for Transient Wave Equations PDF eBook |
Author | Gary Cohen |
Publisher | Springer Science & Business Media |
Pages | 355 |
Release | 2013-04-17 |
Genre | Science |
ISBN | 366204823X |
"To my knowledge [this] is the first book to address specifically the use of high-order discretizations in the time domain to solve wave equations. [...] I recommend the book for its clear and cogent coverage of the material selected by its author." --Physics Today, March 2003
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 |
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.
Higher-Order FDTD Schemes for Waveguides and Antenna Structures
Title | Higher-Order FDTD Schemes for Waveguides and Antenna Structures PDF eBook |
Author | Nikolaos Kantartzis |
Publisher | Springer Nature |
Pages | 215 |
Release | 2022-06-01 |
Genre | Technology & Engineering |
ISBN | 3031016882 |
This publication provides a comprehensive and systematically organized coverage of higher order finite-difference time-domain or FDTD schemes, demonstrating their potential role as a powerful modeling tool in computational electromagnetics. Special emphasis is drawn on the analysis of contemporary waveguide and antenna structures. Acknowledged as a significant breakthrough in the evolution of the original Yee's algorithm, the higher order FDTD operators remain the subject of an ongoing scientific research. Among their indisputable merits, one can distinguish the enhanced levels of accuracy even for coarse grid resolutions, the fast convergence rates, and the adjustable stability. In fact, as the fabrication standards of modern systems get stricter, it is apparent that such properties become very appealing for the accomplishment of elaborate and credible designs.
Mathematics of Large Eddy Simulation of Turbulent Flows
Title | Mathematics of Large Eddy Simulation of Turbulent Flows PDF eBook |
Author | Luigi Carlo Berselli |
Publisher | Springer Science & Business Media |
Pages | 378 |
Release | 2006 |
Genre | Computers |
ISBN | 9783540263166 |
The LES-method is rapidly developing in many practical applications in engineering The mathematical background is presented here for the first time in book form by one of the leaders in the field
Large Eddy Simulation for Incompressible Flows
Title | Large Eddy Simulation for Incompressible Flows PDF eBook |
Author | P. Sagaut |
Publisher | Springer Science & Business Media |
Pages | 600 |
Release | 2006 |
Genre | Computers |
ISBN | 9783540263449 |
First concise textbook on Large-Eddy Simulation, a very important method in scientific computing and engineering From the foreword to the third edition written by Charles Meneveau: "... this meticulously assembled and significantly enlarged description of the many aspects of LES will be a most welcome addition to the bookshelves of scientists and engineers in fluid mechanics, LES practitioners, and students of turbulence in general."
Computational Aerodynamics and Fluid Dynamics
Title | Computational Aerodynamics and Fluid Dynamics PDF eBook |
Author | Jean-Jacques Chattot |
Publisher | Springer Science & Business Media |
Pages | 191 |
Release | 2013-03-09 |
Genre | Technology & Engineering |
ISBN | 3662050641 |
The book gives the reader the basis for understanding the way numerical schemes achieve accurate and stable simulations of physical phenomena. It is based on the finite-difference method and simple problems that allow also the analytic solutions to be worked out. ODEs as well as hyperbolic, parabolic and elliptic types are treated. The book builds on simple model equations and, pedagogically, on a host of problems given together with their solutions.
Finite Element Analysis of Antennas and Arrays
Title | Finite Element Analysis of Antennas and Arrays PDF eBook |
Author | Jian-Ming Jin |
Publisher | John Wiley & Sons |
Pages | 472 |
Release | 2009-02-23 |
Genre | Technology & Engineering |
ISBN | 9780470409725 |
The Most Complete, Up-to-Date Coverage of the Finite Element Analysis and Modeling of Antennas and Arrays Aimed at researchers as well as practical engineers—and packed with over 200 illustrations including twenty-two color plates—Finite Element Analysis of Antennas and Arrays presents: Time- and frequency-domain formulations and mesh truncation techniques Antenna source modeling and parameter calculation Modeling of complex materials and fine geometrical details Analysis and modeling of narrowband and broadband antennas Analysis and modeling of infinite and finite phased-array antennas Analysis and modeling of antenna and platform interactions Recognizing the strengths of other numerical methods, this book goes beyond the finite element method and covers hybrid techniques that combine the finite element method with the finite difference time-domain method, the method of moments, and the high-frequency asymptotic methods to efficiently deal with a variety of complex antenna problems. Complemented with numerous examples, this cutting-edge resource fully demonstrates the power and capabilities of the finite element analysis and its many practical applications.