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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Experimental study of the current redistribution in pulsed operation inside the Nb/sub 3/Sn CICC of an ITER relevant magnet
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Experimental study of the current redistribution in pulsed operation inside the Nb/sub 3/Sn CICC of an ITER relevant magnet

机译:ITER相关磁体的Nb / sub 3 / Sn CICC内部脉冲操作中电流重新分布的实验研究

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摘要

It is believed that critical current reduction in multistrand superconducting cables at nonsteady state conditions is caused by a nonuniform current distribution among strands. This was experimentally proven for small model cables, but is still not verified for large cables. In the ENEA Frascati Laboratory, an ITER relevant, large superconducting magnet has been tested at different field ramp rates. By means of numerous local miniature field sensors (Hall probes and pickup coils) located in a few positions along the conductor, current redistribution phenomena inside the cable have been studied. Fast and slow local field changes have been studied to quantify the current nonuniformity. It has been shown that severe current nonuniformity does exist in the cable and that induced current loops are generated, which decay with very long time constants (up to 10/sup 4/-10/sup 5/ s).
机译:据信,在多态超导电缆中,在非稳态条件下的临界电流降低是由于各股之间的电流分布不均匀引起的。这已通过小型电缆的实验证明,但仍未通过大型电缆进行验证。在ENEA Frascati实验室中,已经在不同的磁场斜坡速率下测试了与ITER相关的大型超导磁体。通过沿导体位于几个位置的多个局部微型场传感器(霍尔探头和拾波线圈),研究了电缆内部的电流重新分布现象。已经研究了快速和慢速局部场变化以量化当前的不均匀性。已经表明,电缆中确实存在严重的电流不均匀性,并且会产生感应电流环路,该环路会以非常长的时间常数(高达10 / sup 4 / -10 / sup 5 / s)衰减。

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