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Evaluation method of critical current and current sharing temperature for large-current cable-in-conduit conductors

机译:大电流导管内导体的临界电流和均流温度的评估方法

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An evaluation method of critical current (Ic) and current sharing temperature (Tcs) is proposed and applied to the experiment of ITER Center Solenoid (ITER-CS) Model Coil Insert, which is a Nb3Sn superconducting coil. Voltage behavior related to normal state transition of conductors during Ic or Tcs measurement is not yet well understood especially in the case of such a large cable with more than one thousand strands as the ITER-CS Insert, because the magnetic field, which has a large effect on its superconducting property, is not constant inside the cable. From the detailed analysis of the voltage behavior of coils, it is found that the integral of electric field averaged over conductor cross section along strand-longitudinal direction is equal to the voltage which is measured by voltage taps during a coil test. This is because the twist pitch of a cable is less than the range of longitudinal field variation in the case of a large-cable-conductor coil. This evaluation method can estimate voltage behavior and predict Ic and Tcs values, which are important parameters for the design of a large-cable-conductor coil, based on the property of the strands composing the conductor.
机译:提出了一种临界电流(Ic)和均流温度(Tcs)的评估方法,并将其应用于ITER中心螺线管(ITER-CS)模型线圈插入物的实验中,该线圈插入物是Nb3Sn超导线圈。在Ic或Tcs测量过程中,与导体的正常状态转换有关的电压行为尚未得到很好的理解,尤其是在ITER-CS插入件这样的具有一千多股绞线的大型电缆的情况下,因为磁场具有很大的磁场对它的超导性能的影响,在电缆内部不是恒定的。通过对线圈的电压行为的详细分析,发现在导体横截面上沿股线纵向平均的电场积分等于在线圈测试过程中通过电压抽头测得的电压。这是因为在大电缆导体线圈的情况下,电缆的扭曲节距小于纵向磁场变化的范围。这种评估方法可以根据构成导体的股线的特性,估计电压行为并预测Ic和Tcs值,这是设计大电缆导体线圈的重要参数。

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