Fr. 390.00

Conservative Finite-Difference Methods on General Grids

English · Hardback

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Description

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This new book deals with the construction of finite-difference (FD) algorithms for three main types of equations: elliptic equations, heat equations, and gas dynamic equations in Lagrangian form. These methods can be applied to domains of arbitrary shapes. The construction of FD algorithms for all types of equations is done on the basis of the support-operators method (SOM). This method constructs the FD analogs of main invariant differential operators of first order such as the divergence, the gradient, and the curl. This book is unique because it is the first book not in Russian to present the support-operators ideas.
Conservative Finite-Difference Methods on General Grids is completely self-contained, presenting all the background material necessary for understanding. The book provides the tools needed by scientists and engineers to solve a wide range of practical engineering problems. An abundance of tables and graphs support and explain methods. The book details all algorithms needed for implementation. A 3.5" IBM compatible computer diskette with the main algorithms in FORTRAN accompanies text for easy use.

List of contents

1. Introduction 2. Method of Support-Operators 3. The Elliptic Equations 4. The Heat Equation 5. Lagrangian Gas Dynamics 6. Conclusion

About the author










Shashkov, Mikhail

Summary

This book considers conservative finite-difference schemes on grids of arbitrary structure to be a discrete model of the continuum physical system. It deals with the construction of finite-difference algorithms for elliptic or steady-state, parabolic or diffusion, and gas dynamics equations.

Product details

Authors Mikhail Shashkov, Shashkov Mikhail
Assisted by Stanly Steinberg (Editor)
Publisher Taylor and Francis
 
Languages English
Product format Hardback
Released 05.12.1995
 
EAN 9780849373756
ISBN 978-0-8493-7375-6
No. of pages 380
Weight 860 g
Illustrations Tabellen, schwarz-weiss
Series Symbolic & Numeric Computation
Subjects Natural sciences, medicine, IT, technology > Mathematics > Miscellaneous

MATHEMATICS / Applied, MATHEMATICS / Differential Equations / General, Differential calculus & equations, Maths for scientists, Maths for engineers, Differential calculus and equations

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