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Overview of current distribution and re-distribution in superconducting cables and their influence on stability

机译:超导电缆中电流分布和再分布及其对稳定性的影响概述

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The stability of multi-strand superconducting cables is substantially influenced by the current distribution among str;inds. If the current distribution before quench is not uniform, the quench of the strand carrying tt-ie largest current may trigger the quench of a whole cable unless its current can transfer to the others quickly. In cables made of insulated strands, slight asymmetric strand transposition and transient changing external magnetic fields affect the current distribution among strands and result in the degradation of the cable quench current. In cables made of non-insulated strands, local current imbalance due to the axial variation of dB/dt can degrade the quench current of cables. When a normal zone is produced by some disturbance, or when a flux-flow voltage appears in a strand carrying the largest current, its current may transfer to the other superconducting strands. The rapidity of this current re-distribution also influences the stability of multi-strand superconducting cables. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 33]
机译:多股超导电缆的稳定性在很大程度上受到strinds之间电流分布的影响。如果淬火之前的电流分布不均匀,则承载tt-即最大电流的绞线的淬火可能会触发整个电缆的淬火,除非其电流可以快速转移到其他电缆。在由绝缘绞线制成的电缆中,轻微的不对称绞线换位和瞬态变化的外部磁场会影响绞线之间的电流分布,并导致电缆淬火电流降低。在非绝缘绞合线制成的电缆中,由于dB / dt的轴向变化而引起的局部电流不平衡会降低电缆的失超电流。当正常区域由于某种干扰而产生时,或者当磁通量流电压出现在承载最大电流的线束中时,其电流可能会转移到其他超导线束。这种电流重新分布的速度也影响了多股超导电缆的稳定性。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:33]

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