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Wavelet-based collocation method for stiff systems in process engineering

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posted on 2024-07-11, 07:54 authored by Tonghua ZhangTonghua Zhang, Yu Chu Tian, Moses O. Tadé
Abrupt phenomena in modelling real-world systems such as chemical processes indicate the importance of investigating stiff systems. However, it is difficult to get the solution of a stiff system analytically or numerically. Two such types of stiff systems describing chemical reactions were modelled in this paper. A numerical method was proposed for solving these stiff systems, which have general nonlinear terms such as exponential function. The technique of dealing with the nonlinearity was based on the Wavelet-Collocation method, which converts differential equations into a set of algebraic equations. Accurate and convergent numerical solutions to the stiff systems were obtained. We also compared the new results to those obtained by the Euler method and 4th order Runge-Kutta method.

Funding

Wavelet approaches for solving nonlinear dynamic systems in process engineering

Australian Research Council

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PDF (Accepted manuscript)

ISSN

0259-9791

Journal title

Journal of Mathematical Chemistry

Volume

44

Issue

2

Pagination

12 pp

Publisher

Springer

Copyright statement

Copyright © 2007 Springer Science+Business Media, LLC. The accepted manuscript is reproduced in accordance with the copyright policy of the publisher. The definitive version is available at www.springer.com.

Language

eng

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