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Mathematical modeling of heat transfer in the film-substrate-thermostat system during heating of an electrically conductive film by a high-density pulse current

Authors :
M. A. Vasyutin
N. D. Kuz’michev
Elena A. Lapshina
Ekaterina V. Danilova
Source :
Zhurnal Srednevolzhskogo Matematicheskogo Obshchestva. 23:82-90
Publication Year :
2021
Publisher :
National Research Mordovia State University MRSU, 2021.

Abstract

Mathematical modeling of heat transfer in the film-substrate-thermostat system with a pulsed flow of high-density current through an electrically conductive film has been carried out. On the basis of the simulation, the analysis of the heating of a niobium nitride film with a high resistivity near the critical temperature of the transition to the superconducting state is made. The inhomogeneous heat conduction equation which is solved numerically, simulates heat transfer in the film-substrate-thermostat system for the third on the left and the first on the right initial boundary value problem. Using the symmetry of the problem, the parameter H is determined, which is equal to the ratio of the heat transfer of the film surface to its thermal conductivity; this parameter is necessary for effective heat removal. It is shown that effective heat removal from films can be provided by current-carrying and potential clamping contacts made, for example, of beryllium bronze. This makes possible to study the current-voltage characteristics of superconductors near the critical transition temperature to the superconducting state with high-density currents (104−105A/cm2) without significant heating of the samples.

Details

ISSN :
25877496 and 20796900
Volume :
23
Database :
OpenAIRE
Journal :
Zhurnal Srednevolzhskogo Matematicheskogo Obshchestva
Accession number :
edsair.doi...........66d3be7bdf1b1284c33e879d5bf04df0
Full Text :
https://doi.org/10.15507/2079-6900.23.202101.82-90