Ключевые слова: LTS, HTS, NbTi, YBCO, current distribution, stability, numerical analysis, quench propagation, minimum quench energy
Friend C.M., Young E.A., Meinesz M., Seung H., Hanping M., Domptail F., Melhem Z., Yibing H., Yifeng Y.
Ключевые слова: MgB2, Bi2223/Ag, tapes, HTS, quench properties, n-value, stability, minimum quench energy, numerical analysis, experimental results
Ключевые слова: presentation, HTS, YBCO, coated conductors, joints, joint resistances, mechanical properties, stress effects, critical caracteristics, critical current, interfaces, fabrication, stability, voltage–temperature characteristics, quench energy, dc performance, ac performance, ac losses, coated conductors transposed, current distribution
Ключевые слова: MgB2, wires, coils, quench properties, design parameters, modeling, numerical analysis, thermal stability, minimum quench energy
Schwartz J., Larbalestier D.C., Hong S., Czabaj B., Miao H., Meinesz M., Wang X., Trociewitz U.P., Knoll D.C., Huang Y., Markiewicz W.D.
Ключевые слова: LTS, NbTi, Rutherford cables, minimum quench energy, experimental results, numerical analysis, thermal performance, power equipment
Ключевые слова: MgB2, minimum quench energy, normal zone propagation, n-value, numerical analysis
Ключевые слова: MgB2, powder processing, spray pyrolysis process, fabrication, nanoparticles, grain boundaries, pinning, minimum quench energy
Ключевые слова: measurement technique, minimum quench energy, winding configurations
Ключевые слова: HTS, YBCO, coated conductors, quench properties, minimum quench energy, normal zone propagation, experimental results
Tomsic M., Dou S.X., Shi D.Q., Rindfleisch M., Kim J.H.(jhk@uow.edu.au)
Ключевые слова: HTS, YBCO, coated conductors, quench, minimum quench energy, ac losses, normal zone propagation, experimental results
Ключевые слова: LTS, NbTi, quench propagation, minimum quench energy, heat transfer, thermal stability, wires multifilamentary, composites, modeling, numerical analysis
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