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Vestnik Yuzhno-Ural'skogo Universiteta. Seriya Matematicheskoe Modelirovanie i Programmirovanie, 2023, Volume 16, Issue 3, Pages 51–64
DOI: https://doi.org/10.14529/mmp230304
(Mi vyuru694)
 

Programming & Computer Software

Recovering of the heat transfer coefficient from the temperature measurements

S. N. Shergin, S. G. Pyatkov

Yugra State University, Khanty-Mansiysk, Russian Federation
References:
Abstract: An inverse analysis is used to recover the heat transfer coefficient in heat conduction problems from boundary measurement of the temperature. The numerical scheme is based on the finite element method in the space variables, the method of finite differences in time, and a special iteration scheme to determine the heat transfer coefficients on each time step. The heat transfer coefficients is sought in the form of a finite segment of a series with unknown Fourier coefficients depending on time. The algorithm for solving the problem relies on theoretical results stating that this problem is well-posed and can be reduced to an operator equation with a contraction. The results of numerical experiments confirm theoretical arguments that this problem is indeed well-posed. The obtained results reveal the accuracy, efficiency, and robustness of the proposed algorithm. It is stable under random perturbations of the data.
Keywords: inverse problem, heat transfer coefficient, parabolic equation, heat and mass transfer.
Funding agency Grant number
Russian Science Foundation 22-11-20031
This work was supported by the Russian Science Foundation and the Government of the Khanty-Mansiysk Autonomous Okrug-YUGRA (Grant no. 22-11-20031).
Received: 07.07.2023
Document Type: Article
UDC: 517.956
Language: English
Citation: S. N. Shergin, S. G. Pyatkov, “Recovering of the heat transfer coefficient from the temperature measurements”, Vestnik YuUrGU. Ser. Mat. Model. Progr., 16:3 (2023), 51–64
Citation in format AMSBIB
\Bibitem{ShePya23}
\by S.~N.~Shergin, S.~G.~Pyatkov
\paper Recovering of the heat transfer coefficient from the temperature measurements
\jour Vestnik YuUrGU. Ser. Mat. Model. Progr.
\yr 2023
\vol 16
\issue 3
\pages 51--64
\mathnet{http://mi.mathnet.ru/vyuru694}
\crossref{https://doi.org/10.14529/mmp230304}
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