Ключевые слова: power equipment, cables, termination, cryogenic systems, nitrogen solid, thermal stability, HTS, modeling, numerical analysis, experimental results
Kim C.H., Kim C.H., Pamidi S.V., Pamidi S.V., Zhang Z., Zhang Z., Graber L., Graber L., Cheetham P., Cheetham P., Kvitkovicova M., Kvitkovicova M., Wagner J., Wagner J.
Ключевые слова: HTS, YBCO, coated conductors, breakdown characteristics, high voltage process, pulsed operation, critical caracteristics, critical current, degradation studies, cryogenic systems, helium gas, measurement setup, critical caracteristics, current-voltage characteristics, experimental results
Ключевые слова: power equipment, HTS, cables, dc performance, termination, power transmission lines, ac losses, cryogenic systems, converters, modeling
Ключевые слова: shipboard applications, power equipment, motors, generators, cables, HTS, modeling, cooling technology
Ключевые слова: shipboard applications, power equipment, HTS, cables, helium gas, design, modeling
Ключевые слова: power equipment, HTS, cables, thermal performance, modeling, cooling technology, helium gas, heat transfer, numerical analysis
Ключевые слова: HTS, YBCO, coated conductors, cylinders, cryogenic systems, helium gas, magnetization, ac losses, shielding effects, measurement setup, experimental results
Ключевые слова: power equipment, cables, helium, cryogenic systems, HTS, modeling, cryostat, termination
Ключевые слова: HTS, YBCO, coated conductors, cylinders, magnetic shielding, temperature dependence, helium, shielding effects, experimental results, dc performance, ac performance
Ключевые слова: power equipment, HTS, cables, dc performance, cryogenic systems, helium gas, termination, design, heat loads, cooling technology, experimental results, thermal performance
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