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Analysis of charging and sudden-discharging characteristics of no-insulation REBCO coil using an electromagnetic coupling model

机译:使用电磁耦合模型分析无绝缘雷切线圈的充电和突然放电特性

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No-insulation (NI) high-temperature superconducting (HTS) REBCO coil has been a promising candidate for manufacturing high-field superconducting magnets with high thermal stability and self-protecting features. When NI coil is operated at the external field, it is necessary to analyze charging and sudden-discharging characteristics of NI coil by considering the effect of magnetic field. In addition, the self-field effect has an obvious influence on the critical current for large-scale coil. Thus, an electromagnetic coupling model in which an equivalent circuit axisymmetric model considers the effect of magnetic field is proposed. The results show that when the radial current exists, the coil voltage and central field will tend to be stable faster. In a high field, the decrease of the critical current leads to the increase of radial current and this effect is more obvious for a larger field. And the charging time with the increase of the external field reduces significantly, while the sudden-discharging time is almost unchanged. For NI coils composed of many double-pancake coils, the charging time and sudden-discharging time proportionally increase with the increase of the number of double-pancake coil and turn number of single-pancake coil.
机译:No绝缘(Ni)高温超导(HTS)REBCO线圈是制造具有高热稳定性和自保护功能的高场超导磁体的有希望的候选者。当Ni线圈在外部场操作时,需要通过考虑磁场的效果来分析Ni线圈的充电和突然放电特性。此外,自场效应对大规模线圈的临界电流具有明显影响。因此,提出了一种电磁耦合模型,其中提出了一种等效电路轴对称模型考虑磁场的效果。结果表明,当存在径向电流时,线圈电压和中心场将趋于稳定更快。在高场中,临界电流的降低导致径向电流的增加,并且对于更大的场,这种效果更为明显。随着外部场的增加,充电时间显着减少,而突然放电时间几乎不变。对于由许多双煎饼线圈组成的Ni线圈,充电时间和突然放电时间随着双骨煎饼线圈的数量的增加而比例地增加,单煎饼线圈的转弯数。

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