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Quench dynamics in MgB2 Rutherford cables

机译:MGB2 Rutherford电缆中的淬火动态

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摘要

The generation and propagation of quench induced by a local heat disturbance or by overcurrents in MgB2 Rutherford cables have been studied experimentally. The analysed cable is composed of 12 strands of monocore MgB2/Nb/Cu10Ni wire and has a transposition length of about 27 mm. Measurements of intra-and inter-strand voltages have been performed to analyse the superconducting-to-normal transition behaviour of these cables during quench. In case of external hot-spots, two different time-dynamic regimes have been observed, a slow stage for the formation of the minimum propagation zone (MPZ), and a fast dynamics once the quench is triggered and propagates to the rest of the cable. Significant local variations of the quench propagation velocity across the strands around the MPZ have been observed, but with average quench propagation velocities closely correlated with the predictions given by one-dimensional-geometry models. For quench induced by overcurrents (i.e. with applied currents higher than the critical current) the nucleation of many normal zones distributed within the cable, which overlap during quench propagation, gives a distinctive and faster quench dynamics.
机译:通过实验研究了局部热干扰或通过MGB2 Rutherford电缆中的过载产生的猝灭的产生和繁殖。分析的电缆由12个单眼MgB2 / Nb / Cu10Ni线组成,并且具有约27mm的转座长度。已经进行了在淬火期间分析这些电缆的超导到正常过渡行为的帧内和链间电压的测量。在外部热点的情况下,已经观察到两个不同的时间动态制度,用于形成最小传播区(MPZ)的慢阶段,并且一旦淬火被触发并传播到电缆的其余部分。已经观察到MPz周围的股线两端的淬火传播速度的显着局部变化,但平均淬火传播速度与由一维几何模型给出的预测密切相关。用于通过过电流引起的淬火(即,具有高于临界电流的施加电流),在淬火传播期间重叠的电缆内分布的许多正常区域的成核,具有独特且更快的淬火动态。

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