On an Approximate Method for Solving the Inverse Problem of Heat Transfer

The problems of constructing accurate and stable algorithms for solving inverse problems of mathematical physics are at the forefront of modern computational mathematics due to the ever-increasing number of applications of such problems in physics and technology, as well as to the properties of thes...

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Published in:Technical physics Vol. 68; no. 6; pp. 121 - 125
Main Authors: Boykov, I. V., Ryazantsev, V. A.
Format: Journal Article
Language:English
Published: Moscow Pleiades Publishing 01.06.2023
Springer
Springer Nature B.V
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ISSN:1063-7842, 1090-6525
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Abstract The problems of constructing accurate and stable algorithms for solving inverse problems of mathematical physics are at the forefront of modern computational mathematics due to the ever-increasing number of applications of such problems in physics and technology, as well as to the properties of these problems, which greatly complicate their numerical solution. In this paper, we consider the problem of numerical solution of one of such problems, known as the inverse problem of heat transfer. The numerical method for solving the inverse problem of heat transfer uses the apparatus of hypersingular integral equations. As far as the authors know, this approach to the construction of methods for solving the inverse problem of heat transfer is used for the first time. The numerical method described in the paper makes it possible to successfully find an approximate solution to the inverse problem of heat transfer, including the case of significant errors in the initial data. The solution of a model example demonstrates the efficiency of the method proposed.
AbstractList The problems of constructing accurate and stable algorithms for solving inverse problems of mathematical physics are at the forefront of modern computational mathematics due to the ever-increasing number of applications of such problems in physics and technology, as well as to the properties of these problems, which greatly complicate their numerical solution. In this paper, we consider the problem of numerical solution of one of such problems, known as the inverse problem of heat transfer. The numerical method for solving the inverse problem of heat transfer uses the apparatus of hypersingular integral equations. As far as the authors know, this approach to the construction of methods for solving the inverse problem of heat transfer is used for the first time. The numerical method described in the paper makes it possible to successfully find an approximate solution to the inverse problem of heat transfer, including the case of significant errors in the initial data. The solution of a model example demonstrates the efficiency of the method proposed.
Audience Academic
Author Ryazantsev, V. A.
Boykov, I. V.
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Cites_doi 10.1515/9783110944976
10.1515/9783110205794
10.1007/978-3-030-65509-9_3
ContentType Journal Article
Copyright Pleiades Publishing, Ltd. 2023. ISSN 1063-7842, Technical Physics, 2023, Vol. 68, No. 6, pp. 121–125. © Pleiades Publishing, Ltd., 2023. ISSN 1063-7842, Technical Physics, 2023. © Pleiades Publishing, Ltd., 2023. Russian Text © The Author(s), 2023, published in Izvestiya Vysshikh Uchebnykh Zavedenii. Povolzhskii Region. Fiziko-Matematicheskie Nauki, 2023, No. 2, pp. 31–40.
COPYRIGHT 2023 Springer
Pleiades Publishing, Ltd. 2023.
Copyright_xml – notice: Pleiades Publishing, Ltd. 2023. ISSN 1063-7842, Technical Physics, 2023, Vol. 68, No. 6, pp. 121–125. © Pleiades Publishing, Ltd., 2023. ISSN 1063-7842, Technical Physics, 2023. © Pleiades Publishing, Ltd., 2023. Russian Text © The Author(s), 2023, published in Izvestiya Vysshikh Uchebnykh Zavedenii. Povolzhskii Region. Fiziko-Matematicheskie Nauki, 2023, No. 2, pp. 31–40.
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inverse problem of heat transfer
ill-posed problem
regularization
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References I. V. Boikov, Approximate Methods for Computing Singular and Hypersingular Integrals, Part 2: Hypersingular Integrals (Penza State Univ., Penza, 2009) [in Russian].
ChikinL. A.Uch. Zap. Kazansk. Gos. Univ.195311357
J. Hadamard, Lecons sur la Propagation des Ondes et les Equations de l’Hydrodynamique (A. Hermann, Paris, 1903, Reprinted by Chelsea, New York, 1949).
AlifanovO. M.Reverse Problems in Heat Exchange1988MoscowMashinostroenie
ApartsynA. S.Nonclassical Linear Volterra Equations of the First Kind2003UtrechtVSP10.1515/9783110944976
A. A. Samarskii and P. N. Vabishchevich, Numerical Methods for Solving Inverse Problems in Mathematical Physics (Walter de Gruyter GmbH, Berlin, 2007). http://samarskii.ru/books/book2007.pdf
BoikovI. V.Dinam. Sist.20199244
BoykovI. V.Topics in Integral and Integro-Differential Equations. Studies in Systems, Decision and Control2021ChamSpringer10.1007/978-3-030-65509-9_3
I. V. Boikov (4010_CR4) 2019; 9
A. S. Apartsyn (4010_CR1) 2003
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SubjectTerms Algorithms
Approximation
Classical and Continuum Physics
Conflicts of interest
Heat transfer
Integral equations
Inverse problems
Iterative methods
Numerical analysis
Numerical methods
Physics
Physics and Astronomy
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