Identification of Mathematical Models of Heat Transfer of HTSC Coils. 2. Algorithm for Solving IHP and the Results of Experimental Data Processing

The presented work is a continuation of the development of a computational and experimental method for determining the thermophysical characteristics (TPC) of the stator coils of a generator operating with the use of the phenomenon of high-temperature superconductivity (HTSC). The paper considers al...

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Published inJournal of engineering physics and thermophysics Vol. 96; no. 6; pp. 1393 - 1406
Main Authors Alifanov, O. M., Budnik, S. A., Vikulov, A. G., Nenarokomov, A. V., Titov, D. M., Morzhukhina, A. V., Il’in, V. V.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.11.2023
Springer
Springer Nature B.V
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ISSN1062-0125
1573-871X
DOI10.1007/s10891-023-02807-9

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Abstract The presented work is a continuation of the development of a computational and experimental method for determining the thermophysical characteristics (TPC) of the stator coils of a generator operating with the use of the phenomenon of high-temperature superconductivity (HTSC). The paper considers algorithms for identifying heat transfer models in the composite material of the stator coil winding. Using the discovered thermophysical properties, it is planned to study the electrothermal interaction in a high-temperature superconductor before its transition to a superconducting state. There is a significant variety of methods for solving the problems of identifying mathematical models of heat transfer, in particular, of determining the thermophysical characteristics of composite materials. As a result of the analysis of alternative methods for solving the identification problem, the iterative regularization method is used in this work.
AbstractList The presented work is a continuation of the development of a computational and experimental method for determining the thermophysical characteristics (TPC) of the stator coils of a generator operating with the use of the phenomenon of high-temperature superconductivity (HTSC). The paper considers algorithms for identifying heat transfer models in the composite material of the stator coil winding. Using the discovered thermophysical properties, it is planned to study the electrothermal interaction in a high-temperature superconductor before its transition to a superconducting state. There is a significant variety of methods for solving the problems of identifying mathematical models of heat transfer, in particular, of determining the thermophysical characteristics of composite materials. As a result of the analysis of alternative methods for solving the identification problem, the iterative regularization method is used in this work.
The presented work is a continuation of the development of a computational and experimental method for determining the thermophysical characteristics (TPC) of the stator coils of a generator operating with the use of the phenomenon of high-temperature superconductivity (HTSC). The paper considers algorithms for identifying heat transfer models in the composite material of the stator coil winding. Using the discovered thermophysical properties, it is planned to study the electrothermal interaction in a high-temperature superconductor before its transition to a superconducting state. There is a significant variety of methods for solving the problems of identifying mathematical models of heat transfer, in particular, of determining the thermophysical characteristics of composite materials. As a result of the analysis of alternative methods for solving the identification problem, the iterative regularization method is used in this work. Keywords: HTSC coils, inverse heat exchange problems, iterative regularization method, cryogenic processes.
Audience Academic
Author Il’in, V. V.
Alifanov, O. M.
Nenarokomov, A. V.
Titov, D. M.
Morzhukhina, A. V.
Vikulov, A. G.
Budnik, S. A.
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Cites_doi 10.1016/j.jqsrt.2017.01.039
10.1016/j.ijheatmasstransfer.2016.02.045
10.1007/BF00827525
10.1007/BF00861246
10.3103/S1068799816040176
10.1108/HFF-03-2016-0136
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– reference: NenarokomovAVKrainovaIVAlifanovOMBudnikSADombrovskyLAIdentification of radiative heat transfer parameters in multilayer thermal insulation of spacecraftInt. J. Numer. Methods Heat Fluid Flow2017271159861410.1108/HFF-03-2016-0136
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SubjectTerms Algorithms
Approximation
Classical Mechanics
Coils (windings)
Complex Systems
Composite materials
Data processing
Engineering
Engineering Thermodynamics
Heat and Mass Transfer
Heat Conduction and Heat Transfer in Technological Processes
Heat transfer
High temperature superconductors
Industrial Chemistry/Chemical Engineering
Inverse problems
Mathematical models
Planning
Regularization
Regularization methods
Stators
Superconductivity
Temperature
Thermodynamics
Thermophysical properties
Winding
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Title Identification of Mathematical Models of Heat Transfer of HTSC Coils. 2. Algorithm for Solving IHP and the Results of Experimental Data Processing
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