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Normal zone origination and propagation in superconducting wire with fast changing current

机译:电流快速变化的超导线中的正常区域起源和传播

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摘要

The key to understanding the fast quench phenomenon in multistrand cables is the normal zone origination and propagation in superconducting wires with fast changing currents. Results of experiments simulating the situation in strands during fast quench development are presented. The maximum quench current, normal zone velocity, increase of current and time before quench are measured in NbTi-CuNi composite wire at different transport current ramp rates and at different initial currents. Normal zone velocity propagation depends on I(t) and I/spl dot/(t) only. The presence of an initial current leads to the acceleration of normal zone propagation at decreasing current. The initial current also leads to a reduction of the current increase and the time when a quench starts. We use the results received to explain the appearance of fast quench phenomenon in superconducting cables with insulated or highly resistive matrix strands.
机译:理解多股电缆中快速淬灭现象的关键是在电流快速变化的超导线中正常区域的产生和传播。给出了模拟快速淬火过程中钢绞线情况的实验结果。在不同的传输电流斜率和不同的初始电流下,在NbTi-CuNi复合导线中测量了最大淬火电流,正常区域速度,电流增加和淬火前的时间。正常区域速度传播仅取决于I(t)和I / spl点/(t)。初始电流的存在会导致电流减小时正常区域传播的加速。初始电流还导致电流增加的减少和失超开始的时间。我们使用收到的结果来解释具有绝缘或高电阻基体股的超导电缆中快速淬灭现象的出现。

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