氮化铌膜纵截面电流脉冲加热的数值分析

N. D. Kuzmichev, E. Danilova, M. A. Vasyutin
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引用次数: 0

摘要

对氮化铌膜在电流脉冲作用下纵向温度分布的演变进行了数值计算。对非齐次热方程的二维初边值问题进行了数学建模。在初始边值问题中,考虑了膜的电流和电位触点同时作为散热触点。考虑了左起第三个和右起第一个初边值问题的情形。数值解的分析表明,载流触点和电位夹紧触点(例如铍青铜)可以有效地从膜上散热。这使得在没有明显加热的情况下,通过接近临界密度的电流,研究超导膜在过渡到超导态的临界温度附近的电流-电压特性成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical analysis of heating by a current pulse of a niobium nitride membrane in its longitudinal section
A numerical calculation of the evolution of the temperature distribution in the longitudinal section of a niobium nitride membrane when it is heated by an electric current pulse is performed. Mathematical modeling was carried out on the basis of a two-dimensional initial-boundary value problem for an inhomogeneous heat equation. In the initial boundary value problem, it was taken into account that current and potential contacts to the membrane serve simultaneously as contacts for heat removal. The case was considered for the third from the left and the first from the right initial-boundary value problem. Analysis of the numerical solution showed that effective heat removal from the membrane can be provided by current-carrying and potential clamping contacts made, for example, of beryllium bronze. This makes it possible to study the current-voltage characteristics of superconducting membranes near the critical temperature of the transition to the superconducting state by currents close to the critical density without significant heating.
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