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Construction of Combined Models of the Properties of Bulk High-Temperature Superconducting Materials

机译:大块高温超导材料性能组合模型的构建

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The article contains the results of research that was aimed at improving the models of properties of bulk high-temperature superconducting (HTS) materials, which are necessary for numerical analysis of electromagnetic fields in electrical devices containing elements of high-temperature superconductors. Approximating combined models for a set of transport and bound currents are considered, which are determined, respectively, by the resistive model for currents and the nonlinear hysteresis model for the magnetization. The model of transport currents is based on the known types of the critical-state model. The material-magnetization model is composed for a set of magnetic moments of elementary superconducting cylinders with diameters that are much smaller than their length, which are oriented in the direction of the principal anisotropy axis of the material. The approximation to the actual conditions is realized by the statistical characteristics that specify the possible changes in the critical current density, the critical field strength, and the spatial orientation of the basic axes of the elementary cylinders. The results of studies of a laboratory model, which consists of a cylindrical HTS element and an annular permanent magnet, are presented and compared with the results of electromagnetic-field calculations according to the proposed models of properties.
机译:本文包含的研究结果旨在改善整体高温超导(HTS)材料的性能模型,这对于包含高温超导体元素的电子设备中的电磁场进行数值分析是必需的。考虑了一组传输电流和约束电流的近似组合模型,分别由电流的电阻模型和磁化的非线性磁滞模型确定。传输电流模型基于临界状态模型的已知类型。材料磁化模型由基本超导圆柱体的一组磁矩组成,这些磁矩的直径远小于其长度,这些磁矩沿材料的主各向异性轴方向定向。通过指定临界电流密度,临界场强和基本气缸基本轴的空间方向可能变化的统计特性,可以实现对实际条件的近似估计。提出了由圆柱形HTS元件和环形永磁体组成的实验室模型的研究结果,并根据提出的特性模型与电磁场计算结果进行了比较。

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