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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Modeling Current-Field Instabilities in High Performance ${rm Nb}_{3}{rm Sn}$ Strands in Moderate Field
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Modeling Current-Field Instabilities in High Performance ${rm Nb}_{3}{rm Sn}$ Strands in Moderate Field

机译:在中等磁场中的高性能$ {rm Nb} _ {3} {rm Sn} $链中建模电流场不稳定性

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摘要

High Performance internal-Sn-type ${rm Nb}_{3}{rm Sn}$ strands are only marginally stable. This has significant consequences for strand measurement at higher fields (12 T), and leads to magnetic flux jumping at lower fields (0–1 T). However, the most troublesome regimes of instability from a magnet maker''''s point of view are moderate fields where current transport and external magnetic fields interact to create an instability not evident from magnetization at current levels well below that predicted by higher field results. These effects can be described in terms of adiabatic and dynamic stability, using a model first developed by Wilson. Modifications are presented for a multifilamentary strand, with HEP-relevant values of $d_{rm eff}$ , RRR, strand diameter, $J_{c}$ , and local thermal environment. Model predictions are compared to experimental strand results to bring out the relative functional dependence of stability on RRR and $d_{eff}$ ,
机译:高性能内部Sn型$ {rm Nb} _ {3} {rm Sn} $链仅略微稳定。这对于在较高磁场(12 T)下的钢绞线测量具有重大影响,并导致在较低磁场(0-1 T)处的磁通量跳跃。然而,从磁铁制造商的角度来看,最麻烦的不稳定状态是中等强度的磁场,在该磁场中,电流传输和外部磁场相互作用会产生不稳定性,而电流水平远低于较高磁场结果所预测的水平。可以使用威尔逊首先开发的模型,根据绝热和动态稳定性来描述这些影响。提出了对多丝链的修改,具有与HEP相关的值$ d_ {rm eff} $,RRR,股直径,$ J_ {c} $和局部热环境。将模型预测与实验链结果进行比较,以得出稳定性对RRR和$ d_ {eff} $的相对函数依赖性,

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