ENGLISH

Computational Galerkin Methods

Book information

Publisher
Springer-Verlag Berlin Heidelberg
Year
1984
ISBN
978-3-642-85951-9, 978-3-642-85949-6
DOI
10.1007/978-3-642-85949-6
Language
english
Format
PDF
Filesize
7 MB (7258346 bytes)
Series
Springer Series in Computational Physics
Edition
1
Pages
310\319
Orientation
yes
Scanned
yes
Time added
2013-08-01 04:00:00

Description

In the wake of the computer revolution, a large number of apparently uncon­ nected computational techniques have emerged. Also, particular methods have assumed prominent positions in certain areas of application. Finite element methods, for example, are used almost exclusively for solving structural problems; spectral methods are becoming the preferred approach to global atmospheric modelling and weather prediction; and the use of finite difference methods is nearly universal in predicting the flow around aircraft wings and fuselages. These apparently unrelated techniques are firmly entrenched in computer codes used every day by practicing scientists and engineers. Many of these scientists and engineers have been drawn into the computational area without the benefit offormal computational training. Often the formal computational training we do provide reinforces the arbitrary divisions between the various computational methods available. One of the purposes of this monograph is to show that many computational techniques are, indeed, closely related. The Galerkin formulation, which is being used in many subject areas, provides the connection. Within the Galerkin frame-work we can generate finite element, finite difference, and spectral methods.

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