Revival: Numerical Solution Of Convection-Diffusion Problems (1996)
by
K.W. Morton
Book Details
Format
Hardback or Cased Book
Book Series
CRC Press Revivals
ISBN-10
1138105783
ISBN-13
9781138105782
Publisher
Taylor & Francis Ltd
Imprint
CRC Press
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Jun 14th, 2018
Print length
384 Pages
Weight
690 grams
Product Classification:
Differential calculus & equationsInformation technology: general issues
Ksh 42,300.00
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This volume draws together all these ideas and shows how they overlap and differ. It provides a useful and wide-ranging source of algorithmic concepts and techniques of analysis. The material is drawn both from theoretically oriented literature on finite differences, finite volume and finite element methods.
Accurate modeling of the interaction between convective and diffusive processes is one of the most common challenges in the numerical approximation of partial differential equations. This is partly due to the fact that numerical algorithms, and the techniques used for their analysis, tend to be very different in the two limiting cases of elliptic and hyperbolic equations. Many different ideas and approaches have been proposed in widely differing contexts to resolve the difficulties of exponential fitting, compact differencing, number upwinding, artificial viscosity, streamline diffusion, Petrov-Galerkin and evolution Galerkin being some examples from the main fields of finite difference and finite element methods.
The main aim of this volume is to draw together all these ideas and see how they overlap and differ. The reader is provided with a useful and wide ranging source of algorithmic concepts and techniques of analysis. The material presented has been drawn both from theoretically oriented literature on finite differences, finite volume and finite element methods and also from accounts of practical, large-scale computing, particularly in the field of computational fluid dynamics.
The main aim of this volume is to draw together all these ideas and see how they overlap and differ. The reader is provided with a useful and wide ranging source of algorithmic concepts and techniques of analysis. The material presented has been drawn both from theoretically oriented literature on finite differences, finite volume and finite element methods and also from accounts of practical, large-scale computing, particularly in the field of computational fluid dynamics.
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