AC Loss Reduction in Round HTS Cables Achieved by Low-Cost Filamentization of Tape Conductors
Снижение переменных потерь в круглых HTS-кабелях, достигнутое за счёт недорогой филаментизации лентовых проводников
2024-02-09
SCID: 54.1/qya6ee28
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AC lossREBCOcoated conductor (CC) tapesfilamentizationround HTS cables
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Abstract (AI)
Knowledge of the AC loss generated in a superconducting cable during variation of magnetic field is essential when considering its use in pulsed magnets. In round high-temperature superconducting (HTS) cables made from coated conductor (CC) tapes, the hysteresis loss is proportional to the tape width. Then an effective measure for reducing the loss is the division of the superconducting layer into parallel filaments. We investigated the AC loss in short models of round cables, containing in different arrangements two layers of 10 standard helically laid tapes. At magnetic field amplitudes surpassing 0.1 T the loss did not depend on the cable architecture, in agreement with simple analytical prediction. Substantial reduction of magnetization loss was obtained in the cable models from novel coated conductor (CC) tapes with a low-cost filamentized REBCO layer produced in an industrial process utilizing a special 3D patterned metal substrate. Further research should address the improvement of critical current and optimization of metallic layers, allowing a migration of current between filaments without substantial increase of coupling loss.
Key Findings
1
Cable models built from novel coated conductor tapes with a low-cost filamentized REBCO layer exhibited substantial reduction of magnetization (AC) loss.
2
Further work is needed to improve critical current and optimize metallic layers to enable current sharing between filaments without significantly increasing coupling loss.
3
Hysteresis AC loss in round HTS cables made from coated conductor tapes is proportional to tape width, so dividing the superconducting layer into parallel filaments reduces loss.
4
In short round-cable models containing two layers of 10 helically laid tapes, magnetization loss became independent of cable architecture for magnetic field amplitudes above 0.1 T, matching analytical predictions.
5
The filamentized REBCO layer is produced via an industrial low-cost process using a special 3D patterned metal substrate.
Research Object
Round high-temperature superconducting (HTS) cables made from coated conductor (CC) tapes with low-cost filamentized REBCO layers
Research Subject
Reduction of AC (magnetization/hysteresis) loss via division of the superconducting layer into parallel filaments (low-cost filamentization) and related effects on loss dependence, coupling, and critical current in short cable models
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2024-02-09
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