Experimental and numerical data on a surface-shunt metal-insulation (SSMI) rare-earth barium copper oxide (REBCO) pancake coil. The dataset includes test results from a stainless steel co-wound MI REBCO double-pancake coil, before and after applying a soldered surface shunt, in a saturated liquid nitrogen bath. It was created by Yi Li, Siwei Chen, Chukun Gao, Fangliang Dong, Yuhu Zhai, Jonathan Dye, and Dongkeun Park from the Plasma Science and Fusion Center Dataverse and was last updated on 2026-06-24.
Use Cases
- Modeling inter-turn current sharing in no-insulation (NI) coils based on the described H-formulation and rotated anisotropic resistivity.
- Analyzing defect tolerance during coil energization based on the experimental and numerical research described.
- Studying the enhancement of current sharing via solder surface shunts applied to REBCO tape edges.
- Benchmarking numerical models of superconducting coil dynamic behavior against experimental test data.
Strengths
- Dataset is based on both experimental testing and numerical modeling, providing a dual perspective.
- Research focuses on a specific and advanced coil design: a surface-shunt metal-insulation (SSMI) REBCO pancake coil.
- Experimental setup involved testing in a saturated liquid nitrogen bath, a standard cryogenic environment.
Limitations
- Column-level documentation is absent; field semantics must be inferred after download.
- Row count is unknown, which may limit suitability assessment.
- Last updated 2026-06-24 17:11:41; freshness should be verified.
Provenance
- Source
- Plasma Science and Fusion Center Dataverse
- Collection Method
- Experimental testing and numerical modeling using the H-formulation.
- Freshness
- Last updated 2026-06-24 17:11:41.