Dondapati R.S., Kalsia M.
Ключевые слова: HTS, cables cold-dielectric, cryogenic systems, cooling technology, nitrogen liquid , hydraulic performances, friction, design parameters, pressure drop, modeling, numerical analysis
Physica C, 2021, v.588, N , p.1353614
Полный текст на Sci-Hub
Дополнительная информация
Ключевые слова: power equipment, cables cold-dielectric, cables coaxial, cables single phase, HTS, cooling technology, thermal-hydraulics, numerical analysis, pressure drop, friction, temperature distribution, cryogenic systems, nitrogen liquid , heat transfer
Physica C, 2019, v.564, N , p.59-67
Ключевые слова: HTS, YBCO, coated conductors, power equipment, cables cold-dielectric, design parameters, thermal-hydraulics, cooling technology, nitrogen liquid , cryogen transfer line, pressure drop, heat transfer, temperature distribution, ac losses, modeling, numerical analysis
Physica C, 2019, v.566, N 11, p.1353525
Ключевые слова: power equipment, HTS, cables cold-dielectric, design parameters, cooling technology, temperature distribution, cryogen transfer line, cryogenic systems, cryocoolers, modeling, numerical analysis, heat transfer, thermal-hydraulics
Physica C, 2019, v.567, N , p.1353549
Dondapati R.S., Usurumarti P.R., Kalsia M.
Ключевые слова: HTS, cables coaxial, cooling technology, cryogenic systems, argon, thermal properties, thermal conductivity, specific heat, density, viscosity, pressure dependence, temperature dependence
Physica C, 2017, v.536, N , p.30-34
Dondapati R.S., Usurumarti P.R., Kalsia M., Vasudev V.
Ключевые слова: power equipment, power transmission lines, HTS, current leads, design, cooling technology, helium liquid, design parameters, temperature distribution
PROCEEDINGS IEEE REGION 10 CONFERENCE TENCON, 2017, v.7, N , p.505-509
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