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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Quench Detection and Protection of Cryocooler-Cooled YBCO Pancake Coil for SMES
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Quench Detection and Protection of Cryocooler-Cooled YBCO Pancake Coil for SMES

机译:低温冷却器冷却的YBCO薄煎饼卷的淬火检测与保护

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摘要

In this paper, we focus on the quench detection and protection of a cryocooler-cooled pancake coil for SMES wound with a YBCO bundle conductor composed of laminated electrically insulated YBCO-coated conductors. Because the normal-zone propagation velocity is much slower in a high-temperature superconducting (HTS) coil than in a low-temperature superconducting (LTS) coil, the detection of the non-recovering normal zone using a voltage signal is quite difficult. Quench detection is considered to be more difficult during SMES operation because of the noise of the converter or other equipment. Therefore, a quench must be detected using some other method. In the previous paper, we showed that a quench in the coil could be detected by observing the transposition of the current in the bundle conductor caused by local normal transition. In this paper, based on this quench detection method, we investigate the transposition of current and the thermal behavior during the quench detection and the dumping of the stored energy by an external resistance in coils wound with a YBCO laminated bundle conductor for SMES and determine the appropriate stabilizer thickness of the YBCO-coated conductors.
机译:在本文中,我们着重于用于SMES的低温冷却器冷却的薄煎饼线圈的失超检测和保护,该线圈缠绕有由层压的电绝缘YBCO涂层导体组成的YBCO束导体。由于高温超导(HTS)线圈中的正常区域传播速度比低温超导(LTS)线圈中的正常区域传播速度要慢得多,因此使用电压信号检测非恢复正常区域非常困难。由于转换器或其他设备的噪声,在SMES操作期间,淬火检测被认为更加困难。因此,必须使用其他方法来检测失超。在先前的论文中,我们表明可以通过观察由局部正态转变引起的束导体中电流的转位来检测线圈中的失超。在本文中,基于这种失超检测方法,我们研究了在用YBCO叠层束导体缠绕SMES的线圈中,在失超检测过程中电流的转置和热行为以及通过外部电阻对存储能量的倾销,并确定了YBCO涂层导体的适当稳定剂厚度。

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