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Modeling of High-Tc Superconducting Bulk using Different Jc–T Relationships over Dynamic Permanent Magnet Guideway

机译:动态永磁体导轨上使用不同的Jc-T关系对高超导超导体进行建模

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摘要

The linear temperature dependence of critical current density Jc∝((Tc-T)/(Tc-T0)) and the nonlinear functions of Jc∝(1-(T/Tc)2)α with the exponent α equal to 1, 3/2, and 2 are used to calculate the dynamic levitation force, the temperature distribution, and the current density distribution of the high-temperature superconducting (HTS) YBaCuO bulk over a permanent magnetic guideway (PMG). The calculations were based on the H-formulation and E–J power law. The model of the HTS bulk and the PMG has been built as a geometric entity by finite element software. To simulate the magnetic field fluctuation caused by the PMG arrangement irregularity, a small amplitude vibration in the vertical direction is applied to the PMG during the calculations. Both the low vibration frequency of 2 Hz and the high vibration frequency of 60 Hz are analyzed as the representative converted linear speeds of 34 km/h and 1018 km/h for magnetic levitation (Maglev) application. We compared the electromagnetic-thermo-force modeling with the experiments and the previous model without considering the thermal effect. The levitation force computed by the Jc–T relationship, in which Jc is proportional to (1-(T/Tc)2)2, is found to be in best agreement with the experimental data under quasi-static conditions. This work can provide a reference for the HTS electromagnetic-thermal-force coupling reproduction method of HTS Maglev at high speed.
机译:临界电流密度Jc∝((Tc-T)/(Tc-T0))的线性温度依赖性和Jc∝(1-(T / Tc) 2 的非线性函数指数α等于1、3 / 2和2的α用于计算高温超导(HTS)YBaCuO块在一个平面上的动态悬浮力,温度分布和电流密度分布永磁导轨(PMG)。计算基于H公式和E–J幂定律。 HTS块和PMG的模型已通过有限元软件构建为几何实体。为了模拟由PMG排列不规则引起的磁场波动,在计算过程中会在PMG上施加垂直方向的小幅度振动。分析了2 Hz的低振动频率和60 Hz的高振动频率,将其作为代表的磁悬浮(Maglev)应用的线速度分别为34 km / h和1018 km / h。我们将电磁热力模型与实验和以前的模型进行了比较,而没有考虑热效应。通过Jc-T关系计算出的悬浮力,其中Jc与(1-(T / Tc) 2 2 成正比,这是最一致的准静态条件下的实验数据。这项工作可以为高速磁悬浮列车的高温超导电磁热力耦合再现方法提供参考。

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