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Theoretical Prediction of the Quench Behavior of a SFCL Module Having a BSCCO-2212 Bulk Coil and a Shunt Coil

机译:具有BSCCO-2212大容量线圈和并联线圈的SFCL模块的淬火行为的理论预测

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This paper deals with theoretical prediction of the quench behavior for a superconducting fault current limiter (SFCL) module. The SFCL module consists of a monofilar type BSCCO-2212 bulk and a shunt coil made of copper or brass. The BSCCO-2212 bulk coil is placed inside the shunt coil, and they are connected in parallel. In order to analyse the quench behavior of the module, the equivalent circuit equation was first derived from the experimental circuit structure and then the partial differential equation was solved. The inductance values of the BSCCO bulk coil and impedance of the shunt coil are calculated by Bio-Savart and Ohm''s formula, respectively. We computed the voltage and current behavior during quenches using those values, and compared the results with experimental short-circuit data for the SFCL module. Both computation and test results agreed well. Therefore, we conclude that the analytic result can be applied effectively to design of a SFCL module.
机译:本文对超导故障限流器(SFCL)模块的失超行为进行理论预测。 SFCL模块由单线BSCCO-2212型散装线圈和由铜或黄铜制成的并联线圈组成。 BSCCO-2212大容量线圈放置在并联线圈内部,并且它们并联连接。为了分析模块的失超行为,首先从实验电路结构中导出等效电路方程,然后求解偏微分方程。 BSCCO体线圈的电感值和并联线圈的阻抗分别通过Bio-Savart和Ohm公式计算。我们使用这些值计算了淬火期间的电压和电流行为,并将结果与​​SFCL模块的实验短路数据进行了比较。计算和测试结果都很好。因此,我们得出结论,分析结果可以有效地应用于SFCL模块的设计。

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