Hasegawa T., Iwakuma M., Koizumi T., Wang T., Konno M., Shiohara K., Ohnishi H., Sugane H., Kitamura T., Adachi K., Sano S., Mido N.
Hasegawa T., Iwakuma M., Koizumi T., Konno M., Shiohara K., Hironaga R., Ohnishi H., Adachi K., Sano S., Mido N.
Ключевые слова: cables, HTS, YBCO, coated conductors, cables triaxial, bus bar conductor, design, critical caracteristics, Jc/B curves, heat losses, fabrication, test results
Ключевые слова: power equipment, cables triaxial, cables three-phase, cryogenic systems, photo, cooling technology, grid operation, HTS, presentation
Ключевые слова: power equipment, cables triaxial, HTS, power distribution system, joints, design, losses, insulation, YBCO, coated conductors, IBAD process, design parameters
Ключевые слова: power equipment, HTS, cables triaxial, quench protection, fault currents, modeling, coated conductors
Ключевые слова: power equipment, cables triaxial, nitrogen liquid , cryogenic systems, modeling, prototype, test results, numerical analysis, HTS, YBCO, coated conductors
Ключевые слова: power equipment, cables triaxial, modeling, numerical analysis, design parameters, HTS, YBCO, coated conductors, thermal properties, fault currents, resistance
Ключевые слова: power equipment, grid operation, cables three-phase, cables triaxial, HTS, Bi2223, FCL resistive, prototype, test results, installation
Ключевые слова: power equipment, HTS, cables triaxial, design, design parameters, YBCO, coated conductors, ac losses, modeling, numerical analysis, IBAD process, RABITS process, comparison
Ключевые слова: power equipment, HTS, cables triaxial, current distribution, impedance, numerical analysis, YBCO, coated conductors, design parameters
Ключевые слова: power equipment, HTS, cables triaxial, modeling, insulation, quench properties, numerical analysis
Ключевые слова: power equipment, HTS, cables triaxial, distribution, design parameters, modeling
Ключевые слова: presentation, HTS, cables triaxial, temperature distribution, fault currents, voltage waveforms, current waveforms
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