Dudek A., Schauer F., Geiger J., Otte M., Abmus D., Biedermann C., Bozhenkov S., Brauer T., Kocsis G., Lazerson S., Pedersen T.S., Szepesi T., Standley B.
Ключевые слова: Tokamak, magnetic flux distribution, modeling, numerical analysis
Ключевые слова: HTS, YBCO, bulk, stacked blocks, levitation performance, magnetic flux distribution, flux density, experimental results, guidance
Ключевые слова: levitation performance, HTS, GdBCO, bulk, magnetic shielding, experimental results, magnetic flux distribution
Ghoshal P.K., Smith E., Ballard J., Biallas G., Brown G., Butler D., Carstens T., Chudakov E., Creel J., Egiyan H., Martin F., Qiang Y., Stevens M., Spiegel S., Whitlatch T., Wolin E.
Ключевые слова: HTS, coated conductors, cable-in-conduit conductor, critical caracteristics, comparison, commercialization, geometry effects, MOD process, MOCVD process, PLD process, RCE-LATS process, IBAD process, RABITS process, critical current, magnetic field dependence, temperature dependence, critical current density, magnetic flux distribution, experimental results
Ключевые слова: cyclotron, magnets dipole, coils, MgB2, cables, magnetic flux distribution, modeling
Ключевые слова: nitrogen liquid , stability, cryocoolers, cryogenic systems, critical caracteristics, critical current, flux density, magnetic flux distribution, magnetization, MRI magnets, NMR magnet, coils pancake, stacked blocks, persistent current mode, winding techniques, fabrication, test results
Ключевые слова: HTS, coated conductors, stacked blocks, magnetization, trapped field, GdBCO, relaxation, magnetic flux distribution, pinning force, experimental results
Ключевые слова: power equipment, HTS, transformers, winding configurations, ac losses, numerical analysis, magnetic flux distribution
Akaslompolo S., Asunta O., Bergmans T., Gagliardi M., Galabert J., Hirvijoki E., Kurki-Suonio T., Sipila S., Snicker A., Sarkimaki K.
Ключевые слова: ITER, modeling, numerical analysis, magnetic flux distribution, magnetic field density, coils poloidal field, coils toroidal
Peng X., Koppen M., Hathiramani D., Bykov V., Dudek A., Fellinger J., Hochel K., Rummel K., Endler M., Brucker B., Cardella A., Carls A., Dobmeier F., Geiger J., Grosser K., Grulke O., Hartmann D., Laube R., Neuner U., Rahbarnia K., Sieber T.
Ключевые слова: fusion magnets, stellarator, magnetic sensors, supporting structure, design, photo, coils, magnetic flux distribution, electromagnetic forces, review
Ключевые слова: induction heating, HTS, dc performance, numerical analysis, prototype, fabrication, magnetic flux distribution, temperature distribution, Al
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