Exact And Truncated Difference Schemes For Boundary Value Odes


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Exact and Truncated Difference Schemes for Boundary Value ODEs


Exact and Truncated Difference Schemes for Boundary Value ODEs

Author: Ivan Gavrilyuk

language: en

Publisher: Springer Science & Business Media

Release Date: 2011-08-12


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The book provides a comprehensive introduction to compact finite difference methods for solving boundary value ODEs with high accuracy. The corresponding theory is based on exact difference schemes (EDS) from which the implementable truncated difference schemes (TDS) are derived. The TDS are now competitive in terms of efficiency and accuracy with the well-studied numerical algorithms for the solution of initial value ODEs. Moreover, various a posteriori error estimators are presented which can be used in adaptive algorithms as important building blocks. The new class of EDS and TDS treated in this book can be considered as further developments of the results presented in the highly respected books of the Russian mathematician A. A. Samarskii. It is shown that the new Samarskii-like techniques open the horizon for the numerical treatment of more complicated problems. The book contains exercises and the corresponding solutions enabling the use as a course text or for self-study. Researchers and students from numerical methods, engineering and other sciences will find this book provides an accessible and self-contained introduction to numerical methods for solving boundary value ODEs.

Exact and Truncated Difference Schemes for Boundary Value ODEs


Exact and Truncated Difference Schemes for Boundary Value ODEs

Author: Ivan P. Gavrilyuk

language: en

Publisher:

Release Date: 2011


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Exact Finite-Difference Schemes


Exact Finite-Difference Schemes

Author: Sergey Lemeshevsky

language: en

Publisher: Walter de Gruyter GmbH & Co KG

Release Date: 2016-09-26


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Exact Finite-Difference Schemes is a first overview of the topic also describing the state-of-the-art in this field of numerical analysis. Construction of exact difference schemes for various parabolic and elliptic partial differential equations are discussed, including vibrations and transport problems. After this, applications are discussed, such as the discretisation of ODEs and PDEs and numerical methods for stochastic differential equations. Contents: Basic notation Preliminary results Hyperbolic equations Parabolic equations Use of exact difference schemes to construct NSFD discretizations of differential equations Exact and truncated difference schemes for boundary-value problem Exact difference schemes for stochastic differential equations Numerical blow-up time Bibliography