Literature DB >> 36185338

Partial-Insulation HTS Magnet for Reduction of Quench-Induced Peak Currents.

Wooseung Lee1, Dongkeun Park1, Juan Bascuñán1, Yukikazu Iwasa1.   

Abstract

The No-insulation-like (NI) coil's turn-to-turn current paths prevent local heating by forcing the current to bypass into nearby turns when a hot spot appears in a coil. However, the changing direction of the current by bypassing will change the magnetic flux, which generates unwanted induced currents in the adjacent coils in a multiply-stacked HTS magnet. This induced current can temporarily exceed the designed maximum currents in the NI coils, damaging the magnet. A partial-insulation (PI) coil, in which a single or multiple insulated, with a polyimide-like material or a thin ceramic film, is inserted between windings to hinder the current paths, can reduce the peak induced currents in the NI HTS coil's current paths. In this paper, we present the results of a simulation study on the peak-induced current upon a quench of the PI HTS magnet with a double pancake. The study shows that the peak-induced current varies with the number of insulated turns. We also discuss the induced current turn-by-turn simulation. According to the simulation result, the PI effectively reduces overall induced current, especially insulation applied every two turns.

Entities:  

Keywords:  NZP; No-insulation; current density; defect model; high-field magnet

Year:  2022        PMID: 36185338      PMCID: PMC9524365          DOI: 10.1109/tasc.2022.3156064

Source DB:  PubMed          Journal:  IEEE Trans Appl Supercond


  4 in total

1.  Hot-Spot Modeling of REBCO NI Pancake Coil: Analytical and Experimental Approaches.

Authors:  Wooseung Lee; Dongkeun Park; Yoonhyuck Choi; Yi Li; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2021-03-31

2.  Quench Analyses of the MIT 1.3-GHz LTS/HTS NMR Magnet.

Authors:  So Noguchi; Dongkeun Park; Yoonhyuch Choi; Jiho Lee; Yi Li; Philip C Michael; Juan Bascuñán; Seungyong Hahn; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2019-03-06

3.  MIT 1.3-GHz LTS/HTS NMR Magnet: Post Quench Analysis and New 800-MHz Insert Design.

Authors:  Dongkeun Park; Juan Bascuñán; Philip C Michael; Jiho Lee; Yoon Hyuck Choi; Yi Li; Seungyong Hahn; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2019-02-22

4.  HTS Pancake Coils Without Turn-to-Turn Insulation.

Authors:  Seungyong Hahn; Dong Keun Park; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2010-12-23
  4 in total

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