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Features of the thermal stabilization theory of composite superconductors: The nonlinear description of the dissipative states

机译:复合超导体热稳定理论的特征:耗散状态的非线性描述

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摘要

The features of the Joule's energy dissipation in a composite high-temperature superconductor with a power equation of the voltage-current characteristic cooled by liquid helium or hydrogen are discussed. It is shown that the non-standard thermal stabilization conditions of composite superconductors can exist if the nonlinear temperature dependences of the electrical resistivity of the stabilizing matrix and heat flux to liquid refrigerant are considered. First, there may be no minimum currents of the existence and propagation of a normal zone. Second, the intensive cooling of a composite superconductor by liquid refrigerant significantly increases the range of the stable currents, which leads to the existence of the supercritical applied currents. Third, an increase in the temperature of a composite superconductor may occur under the conditions close to adiabatic during irreversible propagation of the thermal instability despite its intensive cooling by liquid refrigerant. This effect must be considered when determining the burnout conditions of a composite superconductor. The performed numerical experiments are compared with the results obtained from the existing thermal stabilization theory of the composite superconductors, which is based on the linear temperature dependence of the critical current density of superconductor and jump-like transition from the superconducting state to the normal.
机译:讨论了joule在复合高温超导体中的能量耗散的特征,具有由液氦或氢气冷却的电压电流特性的功率方程。结果表明,如果认为稳定基质的电阻率和热通量与液体制冷剂的热通量的非线性温度依赖性,则可以存在复合超导体的非标准热稳定条件。首先,可能没有正常区域的存在和传播的最小电流。其次,通过液体制冷剂的复合超导体的密集冷却显着增加了稳定电流的范围,这导致了超临界施加电流的存在。第三,尽管通过液体制冷剂强烈冷却,但在热不稳定的不可逆传播期间,可以在靠近绝热的条件下发生复合超导体的温度的增加。在确定复合超导体的烧坏条件时,必须考虑这种效果。将进行的数值实验与从复合超导体的现有热稳定理论获得的结果进行比较,这基于基于超导体的临界电流密度的线性温度依赖性与从超导状态到正常的跳跃过渡。

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