<p>Since the appearance of computers, numerical methods for discontinuous solutions of quasi-linear hyperbolic systems of partial differential equations have been among the most important research subjects in numerical analysis. The authors have developed a new difference method (named the singulari
Difference Methods for Initial-Boundary-Value Problems and Flow Around Bodies
โ Scribed by Zhu You-lan, Chen Bing-mu, Zhong Xi-chang, Zhang Zuo-min (auth.)
- Publisher
- Springer-Verlag Berlin Heidelberg
- Year
- 1988
- Tongue
- English
- Leaves
- 606
- Edition
- 1
- Category
- Library
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โฆ Synopsis
Since the appearance of computers, numerical methods for discontinuous solutions of quasi-linear hyperbolic systems of partial differential equations have been among the most important research subjects in numerical analysis. The authors have developed a new difference method (named the singularity-separating method) for quasi-linear hyperbolic systems of partial differential equations. Its most important feature is that it possesses a high accuracy even for problems with singularities such as schocks, contact discontinuities, rarefaction waves and detonations. Besides the thorough description of the method itself, its mathematical foundation (stability-convergence theory of difference schemes for initial-boundary-value hyperbolic problems) and its application to supersonic flow around bodies are discussed. Further, the method of lines and its application to blunt body problems and conical flow problems are described in detail. This book should soon be an important working basis for both graduate students and researchers in the field of partial differential equations as well as in mathematical physics.
๐ SIMILAR VOLUMES
This is the second edition of a book, first published in 1957, and is divided into two parts: the first contains the theory of difference methods and the second, applications of this theory. Part 1 starts with a chapter in which the heat flow problem in its simplest form is treated. This is mo
In this book, we study theoretical and practical aspects of computing methods for mathematical modelling of nonlinear systems. A number of computing techniques are considered, such as methods of operator approximation with any given accuracy; operator interpolation techniques including a non-Lagrang