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首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Quench Analysis of MICE Spectrometer Superconducting Solenoid
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Quench Analysis of MICE Spectrometer Superconducting Solenoid

机译:MICE光谱仪超导电磁阀的淬火分析

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摘要

MICE superconducting spectrometer solenoids fabrication and tests are in progress now. First tests of the Spectrometer Solenoid discovered some issues which could be related to the chosen passive quench protection system. Both solenoids do not have heaters and quench propagation relied on the “quench back” effect, cold diodes, and shunt resistors. The solenoids have very large inductances and stored energy which is 100% dissipated in the cold mass during a quench. This makes their protection a challenging task. The paper presents the quench analysis of these solenoids based on 3D FEA solution of coupled transient electromagnetic and thermal problems. The simulations used the Vector Fields QUENCH code. It is shown that in some quench scenarios, the quench propagation is relatively slow and some areas can be overheated. We describe ways of improving the solenoids'' quench protection in order to reduce the risk of possible failure.
机译:MICE超导光谱仪螺线管的制造和测试正在进行中。电磁谱仪的首次测试发现了一些问题,这些问题可能与所选的被动失超保护系统有关。两个螺线管都没有加热器,并且依靠“抑制”效应,冷二极管和分流电阻器来实现淬火传播。螺线管具有非常大的电感和存储的能量,该能量在淬火期间会在冷物料中100%耗散。这使保护他们成为一项艰巨的任务。本文基于耦合瞬态电磁和热问题的3D FEA解决方案,对这些螺线管进行了淬火分析。模拟使用矢量场QUENCH代码。结果表明,在某些淬火情况下,淬火传播相对较慢,并且某些区域可能会过热。我们描述了改善螺线管的失超保护的方法,以减少可能发生故障的风险。

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