
Fourier Analysis of Numerical Approximations of Hyperbolic Equations
Society for Industrial & Applied Mathematics,U.S. (Publisher)
Published on 30. June 2006
Book
Paperback/Softback
152 pages
978-0-89871-392-3 (ISBN)
Description
There has been a growing interest in the use of Fourier analysis to examine questions of accuracy and stability of numerical methods for solving partial differential equations. This kind of analysis can produce particularly attractive and useful results for hyperbolic equations.
This book provides useful reference material for those concerned with computational fluid dynamics for physicists and engineers who work with computers in the analysis of problems in such diverse fields as hydraulics, gas dynamics, plasma physics, numerical weather prediction, and transport processes in engineering, and who need to understand the implications of the approximations they use. Applied mathematicians concerned with the more theoretical aspects of these computations will also find this book invaluable.
This book provides useful reference material for those concerned with computational fluid dynamics for physicists and engineers who work with computers in the analysis of problems in such diverse fields as hydraulics, gas dynamics, plasma physics, numerical weather prediction, and transport processes in engineering, and who need to understand the implications of the approximations they use. Applied mathematicians concerned with the more theoretical aspects of these computations will also find this book invaluable.
More details
Series
Language
English
Place of publication
New York
United States
Target group
Professional and scholarly
Product notice
Paperback (trade)
Dimensions
Height: 230 mm
Width: 155 mm
Thickness: 10 mm
Weight
213 gr
ISBN-13
978-0-89871-392-3 (9780898713923)
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Schweitzer Classification
Content
Introduction
Fourier Analysis of the Accuracy of Semi-Discretizations
Higher Order Semi-Discretizations
Full Discretizations
Damping, Diffusion and Filtering
Group Velocity
Time-Fourier Transforms
Fourier Analysis and L2-Norm of the Global Error
Spectral Methods
Equations in Two Dimensions: Anisotrophy.
Fourier Analysis of the Accuracy of Semi-Discretizations
Higher Order Semi-Discretizations
Full Discretizations
Damping, Diffusion and Filtering
Group Velocity
Time-Fourier Transforms
Fourier Analysis and L2-Norm of the Global Error
Spectral Methods
Equations in Two Dimensions: Anisotrophy.