Ключевые слова: HTS, YBCO, coated conductors, cables in separated cryostat, power transmission lines, thermal-hydraulics, modeling, numerical analysis, cryogenic systems, heat transfer, pressure drop, nitrogen liquid , doping effect, nanoscaled effects, thermal conductivity, specific heat, viscosity, density, friction, cryogenic pumps, cooling technology
Ключевые слова: power transmission lines, power equipment, HTS, cables, design parameters, heat loads, cryogen transfer line, cryogenic pumps, nitrogen liquid , density, specific heat, thermal conductivity, viscosity, temperature dependence, heat transfer, thermal-hydraulics, friction, numerical analysis
Ключевые слова: rotating machines, hybrid systems, fuel, comparison, HTS, conventional systems, generators, motors, converters, power transmission lines
Xiao L., Xiao L., Teng Y., Teng Y., Chen J., Chen J., Qiu M., Qiu M., Zhang G., Zhang G., Zhao Y., Zhao Y., Gao Z., Gao Z., Zhang J., Zhang J., Gong M., Gong M., Song N., Song N., Qiu Q., Qiu Q., Zhou Z., Zhou Z., Jing L., Jing L.
Ключевые слова: power equipment, power transmission lines, HTS, cables, vacuum structure, cryogenic pumps, test long-term operation
Ключевые слова: railway applications, power transmission lines, commercialization, HTS, feeder, cables, voltage drops, training effect, experimental results
Ключевые слова: power equipment, transformers, power transmission lines, modeling, numerical analysis
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