首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Quench localization and current redistribution after quench insuperconducting dipole magnets wound with Rutherford-type cables
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Quench localization and current redistribution after quench insuperconducting dipole magnets wound with Rutherford-type cables

机译:用Rutherford型电缆绕制的超导偶极磁体淬火后的淬火局部化和电流重新分布

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Quench development is studied for the first few milliseconds after the start of a quench with the help of voltage taps and pickup coils in the LHC accelerator dipole models. The reliability of the pickup coil method (the so called quench antenna) is discussed. By studying the flux through the pick-up coils as a function of time information about the current redistribution after the quench in the magnet cable is obtained. Several possible current redistribution models are studied: current transfer between the two layers of the cable, adjacent strand current transfer and redistribution governed by magnetoresistance, strand and interstrand resistance. Comparison of the simulations with the measurements in the magnets shows that the magnetoresistance of the copper in the cable matrix is the main mechanism responsible for current redistribution just after a quench
机译:在LHC加速器偶极子模型中,借助于电压抽头和拾波线圈,在淬火开始后的最初几毫秒内研究淬火的发展。讨论了拾波线圈方法(所谓的失超天线)的可靠性。通过研究通过拾波线圈的磁通量作为时间的函数,可以获得有关在磁电缆中失超后电流重新分布的信息。研究了几种可能的电流重新分配模型:电缆两层之间的电流传输,相邻线束的电流传输和重新分布,这些电流和重新分布受磁阻,线束和线间电阻的控制。将仿真结果与磁体中的测量结果进行比较,结果表明,电缆矩阵中铜的磁阻是引起淬火后电流重新分布的主要机制

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