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首页> 外文期刊>Physica, C. Superconductivity and its applications >Current sharing effect on the current instability and allowable temperature rise of composite high-T-C superconductors
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Current sharing effect on the current instability and allowable temperature rise of composite high-T-C superconductors

机译:均流对复合高T-C超导体电流不稳定性和允许的温升的影响

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摘要

To understand the basic mechanisms of the thermal runaway phenomenon, the limiting margin of the current instability, which may spontaneously occur in composite high-T-C superconductors like multifilament Bi-based wire or tape, is derived under DC magnetic field. The current sharing and allowable temperature rise effects were considered. A static zero-dimensional model was utilized to describe the basic formulae dealing with the peculiarities of the non-isothermal change of superconducting composite voltage-current characteristic. The boundary of allowable stable values of the temperature, electric field and current are derived analytically. It was shown that permissible values of the current and electric field might be higher than those determined by use of the standard critical current criterion. In consequence of this feature, the noticeable allowable temperature rise of the composite superconductor before its transition to the normal state may be seen. The criterion for complete thermal stability condition is written describing the state when temperature of the composite equals critical temperature of a superconductor and the transport current flows stably only in matrix. The performed analysis also proves the existence of value of the volume fraction of a superconductor in composite at which its current-carrying capacity has minimum. These peculiarities are due to the stable current redistribution between superconductor and stabilizing matrix. Therefore, the current sharing not only leads to the matrix/superconductor ratio effect on the stable operating characteristics of the composite high-T-C superconductors but also becomes important in the adequate description of quench process in the high-T-C superconducting magnets. (C) 2004 Elsevier B.V. All rights reserved.
机译:为了理解热失控现象的基本机理,在直流磁场下,得出了电流不稳定性的极限裕度,该极限可能在复合高T-C超导体(如复丝Bi基导线或带)中自发发生。考虑了均流和允许的温升效应。利用静态零维模型来描述处理超导复合电压-电流特性的非等温变化特性的基本公式。通过分析得出温度,电场和电流的允许稳定值的边界。结果表明,电流和电场的允许值可能高于使用标准临界电流标准确定的值。由于该特征,可以看到复合超导体在转变成正常状态之前的明显允许的温度升高。编写了完整的热稳定性条件准则,描述了复合材料的温度等于超导体的临界温度且传输电流仅在矩阵中稳定流动的状态。进行的分析还证明了复合材料中载流能力最小的复合材料中超导体体积分数的存在。这些特性是由于超导体和稳定矩阵之间电流的稳定分配。因此,电流共享不仅导致基体/超导体比率对复合高T-C超导体的稳定工作特性的影响,而且在充分描述高T-C超导磁体的淬火过程中也变得重要。 (C)2004 Elsevier B.V.保留所有权利。

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