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Experimental and numerical investigation of screening currents induced in a Bi-2223/Ag double pancake coil for space applications

机译:用于太空应用的Bi-2223 / Ag双煎饼线圈感应电流的实验和数值研究

摘要

We modelled the screening currents (Is) induced in high-temperature superconducting (HTS) coils to develop a method for the characterization and design of HTS magnets for space applications. The analysis made use of so-called percolation depinning and flux creep models to describe the current density versus the electric field in HTS tapes. We compared the model results with the experimental data obtained from a Bi-2223/Ag double pancake coil. The experimental residual magnetization due to the Is in the Bi-2223/Ag coil can be effectively modelled, assuming an equivalent loop length of approximately 9 mm for the Is in the coil. The values calculated from the method quantitatively agreed with the results for various experimental conditions. We also successfully modelled the hysteresis of the magnetization due to the Is. These results demonstrate the validity of our model for the Is, which considers the effects of flux creep and smaller Is loops in the multi-filamentary Bi-2223/Ag tape.
机译:我们对高温超导(HTS)线圈中感应的屏蔽电流(Is)进行建模,以开发一种表征和设计用于太空应用的HTS磁体的方法。该分析利用了所谓的渗流去钉扎和通量蠕变模型来描述HTS胶带中的电流密度与电场的关系。我们将模型结果与从Bi-2223 / Ag双煎饼卷获得的实验数据进行了比较。假设线圈中Is的等效环路长度约为9 mm,则可以有效地模拟Bi-2223 / Ag线圈中因Is引起的实验剩余磁化强度。从该方法计算出的值与各种实验条件下的结果在数量上一致。我们还成功地模拟了由于Is引起的磁化磁滞。这些结果证明了我们的Is模型的有效性,该模型考虑了多丝Bi-2223 / Ag胶带中通量蠕变和较小Is环的影响。

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