Geometric Integrators for Differential Equations with Highly Oscillatory Solutions

Geometric Integrators for Differential Equations with Highly Oscillatory Solutions

EnglishHardbackPrint on demand
Wu Xinyuan
Springer Verlag, Singapore
EAN: 9789811601460
Print on demand
Delivery on Friday, 21. of August 2026
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Detailed information

The idea of structure-preserving algorithms appeared in the 1980's. The new paradigm brought many innovative changes. The new paradigm wanted to identify the long-time behaviour of the solutions or the existence of conservation laws or some other qualitative feature of the dynamics. Another area that has kept growing in importance within Geometric Numerical Integration is the study of highly-oscillatory problems: problems where the solutions are periodic or quasiperiodic and have to be studied in time intervals that include an extremely large number of periods. As is known, these equations cannot be solved efficiently using conventional methods. A further study of novel geometric integrators has become increasingly important in recent years. The objective of this monograph is to explore further geometric integrators for highly oscillatory problems that can be formulated as systems of ordinary and partial differential equations.
Facing challenging scientific computational problems, this book presents some new perspectives of the subject matter based on theoretical derivations and mathematical analysis, and provides high-performance numerical simulations. In order to show the long-time numerical behaviour of the simulation, all the integrators presented in this monograph have been tested and verified on highly oscillatory systems from a wide range of applications in the field of science and engineering. They are more efficient than existing schemes in the literature for differential equations that have highly oscillatory solutions. 

This book is useful to researchers, teachers, students and engineers who are interested in Geometric Integrators and their long-time behaviour analysis for differential equations with highly oscillatory solutions. 
EAN 9789811601460
ISBN 9811601461
Binding Hardback
Publisher Springer Verlag, Singapore
Publication date September 29, 2021
Pages 499
Language English
Dimensions 235 x 155
Country Singapore
Readership Professional & Scholarly
Authors Wang Bin; Wu Xinyuan
Illustrations 83 Illustrations, color; 103 Illustrations, black and white
Edition 2021 ed.
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