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The Effect of Temperature Dependence of AC Losses in a Bi-2223/Ag Insert of an 8-T Superconducting Magnet

机译:8-T超导磁体Bi-2223 / ag插入件交流损耗温度依赖性的影响

摘要

A conduction-cooled split-gap superconducting magnet system with a center field of 8 T has been designed and fabricated in the Institute of Electrical Engineering, Chinese Academy of Sciences. The system consists of two Bi-2223/Ag coils and six NbTi coils. Due to a large aspect ratio of the high-temperature superconducting tape, there will be large ac losses when the magnet is ramped up and down. An accurate estimation of the total ac losses in the high-temperature superconducting coils is essential for the cryogenic system design. In the Bi-2223/Ag coils, the total ac losses mainly originate from two parts: One is transport loss caused by the variation of transport current with respect to time, and the other is magnetization loss due to alternating external magnetic field. In this paper, the effect of temperature variation on ac losses generated in the Bi-2223/Ag coils is studied. The magnetic field and temperature dependence relations of the critical current density .1c are considered. The calculations are carried out in three steps. First, to estimate the magnitude of ac losses rapidly in the Bi-2223/Ag coils, the ac losses are calculated when the Bi-2223/Ag and NbTi coils are simultaneously charged, in which the temperature distribution is not considered. Second, the temperature variation is considered to calculate the ac losses under the same operating conditions with those in the first case. Finally, the NbTi coils are charged first, followed by the Bi-2223/Ag coils; the ac losses calculated are less than those in the second case. Hence, it is a good way to reduce the ac losses by changing the charging sequences of the Bi-2223/Ag and NbTi cols. Afterward, the calculated results are compared with the experimental data, and they show a good agreement.
机译:已经在中国科学院电气工程研究所设计和制造了中心磁场为8 T的传导冷却裂隙超导磁体系统。该系统由两个Bi-2223 / Ag线圈和六个NbTi线圈组成。由于高温超导带的宽高比大,当磁体上下倾斜时,交流损耗会很大。精确估算高温超导线圈中的总交流损耗对于低温系统设计至关重要。在Bi-2223 / Ag线圈中,总的ac损耗主要来自两部分:一个是传输电流随时间变化引起的传输损耗,另一个是外部交变磁场引起的磁化损耗。在本文中,研究了温度变化对Bi-2223 / Ag线圈中产生的交流损耗的影响。考虑了临界电流密度0.1c的磁场和温度相关关系。计算分三步进行。首先,为了快速估计Bi-2223 / Ag线圈中的交流损耗量,在同时考虑Bi-2223 / Ag和NbTi线圈充电时计算交流损耗,其中不考虑温度分布。其次,考虑温度变化来计算与第一种情况相同的工作条件下的交流损耗。最后,首先对NbTi线圈充电,然后对Bi-2223 / Ag线圈充电;计算出的交流损耗小于第二种情况。因此,这是一种通过更改Bi-2223 / Ag和NbTi cols的充电顺序来减少交流损耗的好方法。然后,将计算结果与实验数据进行比较,结果显示出良好的一致性。

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