Ключевые слова: levitation performance, thermal performance, stability, numerical analysis, HTS, displacements, YBCO, bulk
Barzi E., Andreev N., Yamada R., Zlobin A.V., Turrioni D., Lombardo V., Nobrega F., Apollinari G., Bucciarelli F.
Ключевые слова: HTS, YBCO, coated conductors, thermal stability, nitrogen liquid , surface, roughness, quench properties, overcurrent, heat transfer, experimental results
Ключевые слова: power equipment, FCL resistive, SMES, grid operation, stability, modeling, numerical analysis, transient performance
Ключевые слова: rotating machines, motors synchronous, cryogenic systems, helium, neon, thermosyphon, cooling technology, stability, heat loads, HTS, experimental results
Glowacki B.A., Minervini J.V., Jiang X., Zeng R., Bromberg L., Wozniak M., Cheadle M.J., Brisson J.G.
Ключевые слова: MgB2, wires, comparison, twisting, cables, dc performance, cryogenic systems, helium, cryostat, HTS, current leads, joints, critical caracteristics, critical current, temperature dependence, stability, experimental results
Ключевые слова: HTS, Bi2223/Ag, tapes, coils solenoidal, design parameters, power equipment, SMES, stability, conduction cooled systems, fabrication, test results, cooling technology
Ключевые слова: power equipment, SMES, stability, wind farms application, modeling, control systems, geometry effects, coils, transient performance
Ключевые слова: HTS, REBCO, coated conductors, coils, minimum quench energy, quench protection, insulating medium, stability, experimental results, transient performance
Ключевые слова: detector, coils toroidal, LTS, NbTi, Rutherford cables, stability, quench protection, cryogenic systems, cryostat, design, new
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