Ключевые слова: HTS, coils pancake, insulationless, design parameters, thermal stability, mechanical properties, quench, modeling, thermal conductivity, temperature dependence, heat capacity, current distribution, stress distribution, strain effects, pulsed operation, geometry effects, recovery characteristics
Ключевые слова: HTS, YBCO, bulk, heat capacity, thermal stability, microstructure, experimental results
Ключевые слова: numerical analysis, MgB2, sheath, ex-situ process, wires monofilamentary, thermal stability, current transfer, modeling, length
Ключевые слова: HTS, EuBCO, doping effect, MgB2, bulk, phase composition, X-ray diffraction, lattice parameter, resistivity, temperature dependence, thermal stability, experimental results
Ключевые слова: HTS, coated conductors, stacked blocks, coils pancake, insulationless, design parameters, REBCO, resistive transition, local distribution, electromagnetic forces, thermal stability, quench protection, modeling, critical caracteristics, critical current, angular dependence, magnetic field dependence, current distribution, numerical analysis
Ключевые слова: LHC, luminosity, MgB2, cables, transient performance, links, quench, ac losses, helium gas, minimum quench energy, hot spots, numerical analysis, thermal stability, experimental results, upgrade
Ключевые слова: HTS, coated conductors, insulation coating, stabilizing layers, coils, thermal stability, conduction cooled systems, cooling technology, thermal runaway, stabilizing layers, numerical analysis, design parameters, thermal evaporation, critical caracteristics, critical current, experimental results, charging characteristics
Slutsky S., Swank C.M., Biswas A., Carr R., Escribano J., Filippone B.W., Griffith W.C., Mendenhall M., Nouri N., Osthelder C., Galvan A.P., Picker R., Plaster B.
Ключевые слова: magnetic systems, cryogenic systems, coils, shields, neutron irradiation, thermal stability, magnetic shielding, gradient, prototype, test results
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