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JOURNALS // Matematicheskoe modelirovanie // Archive

Matem. Mod., 2018 Volume 30, Number 12, Pages 129–144 (Mi mm4030)

This article is cited in 15 papers

kd-Tree based adaptive interpolation algorithm for chemical kinetics problems with interval parameters

A. Yu. Morozova, D. L. Reviznikovab, V. Yu. Gidaspova

a Moscow Aviation Institute, Department of Information Technology and Applied Mathematics
b Dorodnicyn Computing Center of RAS

Abstract: In this paper, the question of simulating chemical processes with uncertainty in parameters is considered. A new approach is suggested, which consists in building a dynamic structured net based on a kd-tree, over a space formed by the interval parameters. When the algorithm is executed, during each integration step a piecewise constant polynomial function is build, interpolating the connection between the solution and the exact values of interval parameters. The algorithm has been tested on chemical kinetics problems, including combustion processes, demonstrating its efficiency and wide area of application.

Keywords: interval systems of ODE, dynamic structured grid, Lotka–Volterra model, chemical kinetics.

Received: 09.04.2018


 English version:
Mathematical Models and Computer Simulations, 2019, 11:4, 622–633


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