Schneider-Muntau H.J., Pugnat P., Kramer S., Debray F., Hervieu B., Ronayette L., Molinie F., Berriaud C., Pfister R., Barbier R., Grandclement C., Pelloux M., Krupko Y.
Ключевые слова: magnetic systems, hybrid systems, magnets resistive, coils insert, LTS, NbTi, cryogenic systems, cryostat, helium liquid, commissioning, test results
Juster F.P., Pugnat P., Hervieu B., Ronayette L., Molinie F., Berriaud C., Berthier R., Pfister R., Barbier R., Grandclement C., Yildiz E., Graffin P., Boujet T., Pelloux M., Neyrial H., Verney E., Jousset J*1., Kamke M., Schneider-Muntau H.J*3.
Schneider M., Vertelis V., Balevicius S., Stankevic V., Zurauskiene N., Simkevicius C., Stankevic T., Plausinaitiene V., Tolvaisiene S.
Hornung F., Klaser M., Schneider T., Leys P., Lahn H., Ruf C., Eisele M., Decker M., Gretschmann F., Heinrich P., Rossler J.
Ключевые слова: commissioning, high field magnets, coils insert, HTS, GdBCO, coated conductors, design, design parameters, fabrication, upgrade, coils outer, LTS, NbTi, Nb3Sn, facility
Ключевые слова: HTS, Bi2223, tubes, penetration depth, pulsed operation, dynamic operation, trapped field, screening current, experimental results, numerical analysis
Stock A., Budel J., Jeunesse L*6., Staemp in M., Delautre G., Zimmermann B., Woude R.v., Perez A., Samoilenkov S., MOLODYK A., Pardo E., Kapolka M., Li S., Dadhich A., Grilli F., Benkel T., Hanisch J., Lao M., Reis T., Berberich E., Wolfstadter S., Schneider C., Miller P., Palmer C., Glowacki B., Climente-Alarcon V., Smara A., Tomkow L., Teigelkotter J.
Ключевые слова: aviation application, propulsion system, motors, prototype, fabrication, HTS, GdBCO, coated conductors, stators, ac losses, tapes, stacked blocks, magnetic flux distribution, demagnetization, rotors, cryogenic systems, cooling technology, cryocoolers, power electronics, design, critical current, angular dependence, experimental results
Ключевые слова: presentation, high field magnets, hybrid systems, design, coils insert, magnets resistive, HTS, CORC cables, coils, coils outer, LTS, cable-in-conduit conductor, quench, economic analysis
Ключевые слова: stellarator, magnets, test long-term operation, power supply
Rummel T., Bykov V., Monnich T., Fullenbach F., Schneider M., Bosch H., Nagel M., Carls A., Risse K.
Ключевые слова: stellarator, operational performance, magnetic systems
Rummel T., Bykov V., Monnich T., RiBe K., Koster E., Schneider M., Bosch H., Nagel M., Carls A., Birus D., Dhard C.P.
Ключевые слова: stellarator, magnetic systems, bus bar conductor, joints, current leads, test results, thermal-hydraulics, mechanical training, commissioning
Ключевые слова: HTS, SMES, electromagnetic launch, REBCO, coated conductors, design, design parameters
Ключевые слова: electromagnetic launch, HTS, REBCO, coated conductors, SMES, pulsed operation, model small-scale, design, design parameters, coils racetrack, numerical analysis
Ключевые слова: stellarator, operational performance, magnetic systems, NbTi
Rummel T., Bykov V., Fellinger J., Monnich T., Schneider M., Nagel M., Carls A., Risse K., Birus D., Bosch S., Dhard C.P., Otte M.
Ключевые слова: MgB2, wires, coils solenoidal, SMES, hybrid systems, hydrogen liquid, design, test results, model small-scale
Usoskin A., Schneider T., Rutt A., Dietrich R., Kirchhoff L., Hofacker F., Hessler A., Svistunova O., Kruglov V.
Ключевые слова: high field tests, measurement setup, coils insert, HTS, coils pancake, coated conductors, upgrade, facility
Ghoshal P.K., Burkert V., Elouadrhiri L., Kashy D., Schneider W., Pastor O., Wiseman M., Young G., Zarecky M., Rode C.
Ключевые слова: rotating machines, generators, HTS, economic analysis, modeling, numerical analysis, design, design parameters, MgB2, YBCO, coated conductors, comparison, long conductors
Luongo C., Ghoshal P.K., Elouadrhiri L., Kashy D., Schneider W., Rajput-Ghoshal R., Wiseman M., Legg R., Fair R.J., Hogan J., Young G., Rode C., Ballard J., Biallas G.
Ключевые слова: hybrid systems, magnetic systems, review, LTS, magnets permanent, HTS, coils
Schneider T., Holubek T., Motowidlo L., Casalbuoni S., Grau A., Gerstl S., Saez Jauregui D., KlSser M.
Zbasnik J., Salpietro E., Wang M., Wang B., Taylor C., Juang T., Quettier L., Xu L., Wagner B., McMullin J., Burkert V., Elouadrhiri L., Kashy D., Leung E., Schneider W., Small R.
Ключевые слова: detector, coils toroidal, design parameters, coils pancake, coils solenoidal, space application, LTS, status
Chen J., Zbasnik J., Chen H., Wang M., Wang B., Wahrer B., Taylor C., Juang T., Dell'Orco D., Ross J., Xu L., Wagner B., McMullin J., Pong R., Carter C., Quettier L*2., Burkert V., Elouadrhiri L., Kashy D., Leung E., Schneider W.
Chen J., Wang M., Wang B., Wahrer B., Taylor C., Juang T., Quettier L., Xu L., Wagner B., Carter C., Burkert V., Elouadrhiri L., Kashy D., Leung E., Schneider W.
Ключевые слова: detector, coils solenoidal, magnets double pancake, coils toroidal, design parameters, experimental devices
Wang B., Wahrer B., Taylor C., Zbasnik J., Dell'Orco D., Ross J., Chen J., Xu L., Chen H., Wagner B., McMullin J., Pong R., Juang T., Wang M., Carter C., Quettier L., Burkert V., Elouadrhiri L., Kashy D., Leung E., Schneider W.
Ключевые слова: spectrometer, experimental devices, coils toroidal, design, design parameters, vacuum structure, cooling technology
Ключевые слова: patents, magnets, conduction cooled systems, MRI magnets, medical applications, design, barriers, geometry effects
Ключевые слова: patents, magnets dipole, design, experimental devices
Hornung F., Klaser M., Schneider T., Beckenbach M., Leys P., Neumann H., Ernst R., Lahn H., Ruf C., Stamm M.
Ключевые слова: magnets, test results, measurement setup, cryogenic systems, quench protection, mechanical properties
Ключевые слова: HTS, Bi2223, tapes, coils pancake, hybrid systems, LTS, NbTi, Nb3Sn, test results, power equipment
Weber A., Hammerl G., Schmehl A., Schneider C.W., Mannhart J.(jochen.mannhart@physik.uni-augsburg.de), Schey B., Kuhn M., Nies R., Utz B., Neumueller H.W.
Mannhart J.(jochen.mannhart@physik.uni-augsburg.de), Hammerl, G., Bielefeldt, H., Leitenmeier, S., Schmehl, A., A., Weber, Schneider, C.W.
Ключевые слова: HTS, coated conductors, grain alignment, critical current density, numerical analysis, critical caracteristics
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