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Sudden-Discharging Quench Dynamics in a No-Insulation Superconducting Coil

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Date 2023 Feb 23
PMID 36816464
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Abstract

It is generally agreed that no-insulation (NI) high-temperature superconducting (HTS) magnets do not quench because of the turn-to-turn energy-releasing bypass unique to NI. However, these magnets, especially with high operating current and low ambient thermal capacity, still occur unexpected quenches when the current through the magnets suddenly drops to zero (i.e., the sudden-discharging quench). Here, we report this kind of quench, which is different from that widely-reported quench happening during charging (i.e., the energizing quench). Here, a demonstrative coil with 655-turns, 350 A operating current, and 4 K conduction cooling, is used to prove this sudden-discharging quench, and a simulation model is built to reveal the quench dynamics. Results show the turn-to-turn heat triggers the initial partial quench in the inner coil turns and then the induced overcurrent spreads out the quench like an avalanche to the outer coil turns.

Citing Articles

A surface-shunting method for the prevention of a fault-mode-induced quench in high-field no-insulation REBCO magnets.

Dong F, Park D, Kim J, Bascunan J, Iwasa Y Supercond Sci Technol. 2024; 37(11).

PMID: 39430005 PMC: 11488656. DOI: 10.1088/1361-6668/ad826a.

References
1.
Iwasa Y, Hahn S . First-cut design of an all-superconducting 100-T direct current magnet. Appl Phys Lett. 2014; 103(25):253507. PMC: 3880378. DOI: 10.1063/1.4852596. View

2.
Park D, Bascunan J, Li Y, Lee W, Choi Y, Iwasa Y . Design Overview of the MIT 1.3-GHz LTS/HTS NMR Magnet with a New REBCO Insert. IEEE Trans Appl Supercond. 2021; 31(5). PMC: 8078478. DOI: 10.1109/tasc.2021.3064006. View

3.
Michael P, Park D, Choi Y, Lee J, Li Y, Bascunan J . Assembly and Test of a 3-Nested-Coil 800-MHz REBCO Insert (H800) for the MIT 1.3 GHz LTS/HTS NMR Magnet. IEEE Trans Appl Supercond. 2019; 29(5). PMC: 6529199. DOI: 10.1109/TASC.2019.2901246. View

4.
Hahn S, Kim K, Kim K, Hu X, Painter T, Dixon I . 45.5-tesla direct-current magnetic field generated with a high-temperature superconducting magnet. Nature. 2019; 570(7762):496-499. DOI: 10.1038/s41586-019-1293-1. View

5.
Hahn S, Park D, Voccio J, Bascunan J, Iwasa Y . No-Insulation (NI) HTS Inserts for > 1 GHz LTS/HTS NMR Magnets. IEEE Trans Appl Supercond. 2019; 22(3). PMC: 6508685. DOI: 10.1109/TASC.2011.2178976. View