Ogitsu T., Sasaki K., Ohuchi N., Okamura T., Makida Y., Ohhata H., Aoki M., Yoshida M., Iio M., Mihara S., Arimoto Y., Aoki K., Kurosawa N., Oonaka M., Sumi N.
Sasaki K., Okamura T., Makida Y., Yoshida M., Iio M., Mihara S., Fukao Y., Ohata H., Kurosawa N., Sumi N., Onaka M.
Ключевые слова: magnetic systems, accelerator magnets, LTS, NbTi, cables, coils solenoidal, cryogenic systems, cooling technology, design, status, fabrication
Ключевые слова: HTS, coils, cooling technology, cryogenic systems, refrigerator, helium, hydrogen, heat loads, modeling, numerical analysis
Ключевые слова: HTS, YBCO, tapes, coils, cooling technology, cryogenic systems, refrigerator, cryocoolers, magnetic shielding, heat loads, heat transfer, experimental results, numerical analysis
Ключевые слова: calorimetric method, cryogenic systems, refrigerator, shielding effects, LTS, NbTi, films, laminations, HTS, YBCO, thin films, cooling technology, coils
Ключевые слова: HTS, coils, cooling technology, refrigerator
Ключевые слова: HTS, coils, current leads, refrigerator, helium gas, cooling technology, measurement setup, temperature distribution, heat loads
Sasaki K., Okamura T., Matsuo M., Makida Y., Aoki I., Iida M., Ohhata H., Ki T., Yoshida M., Oonaka M., Tateno A.
Ключевые слова: magnets, coils solenoidal, LTS, NbTi, wires, conduction cooled systems, cryogen transfer line, helium liquid, cryogenic systems, refrigerator, design, fabrication, muon
Ключевые слова: Maglev system, HTS, REBCO, coated conductors, coils racetrack, design parameters, mechanical properties, vibration, frequency dependence, test results, heat loads
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yang Y., Nakamoto T., Makida Y., Terashima A., Ki T., Yoshida M., Iio M., Mihara S., Kawamata H.
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yang Y., Nakamoto T., Makida Y., Ki T., Yoshida M., Iio M., Mihara S.
Ключевые слова: cryogenic systems, accelerator magnets, coils solenoidal, design parameters, helium liquid, heat loads, pressure drop, status
Ogitsu T., Sugano M., Okamura T., Yang Y., Nakamoto T., Sasaki K.-I., Makida Y., Yoshida M., Iio M., Mihara S., Fukao Y.
Okamura T., Takahashi T., Suzuki S., Makida Y., Iida M., Kasami K., Ohhata H., Kawai M., Kondo Y., Araoka O., Iwasaki R., Aoki K., Kakiguchi Y., Shirakabe Y., Sekimoto M.
Ключевые слова: spectrometer, magnets, cryocoolers, beam lines
Ogitsu T., Okamura T., Adachi T., Makida Y., Ohhata H., Ikedo Y., Miyake Y., Shimomura K., Strasser P., Kawamura N., Koda A., Yoshida M., Orikasa T., Okada R., Kadono R., Fujimori H., Nishiyama K.
Ogitsu T., Sasaki K., Sugano M., Okamura T., Yamamoto A., Kimura N., Shimomura K., Saito N., Ohkubo R., Kume T., Okada R.
Ключевые слова: experimental devices, coils solenoidal, homogeneity, cryogenic systems, vibration, frequency dependence, heat transfer, current leads, HTS, bulk, muon
Gupta R., Muratore J., Parker B., Wanderer P., Jain A., Charrier J., Boussuge T., Kakuno H., Ogitsu T., Makida Y., Nakamoto T., Sasaki K., Araoka O., Fujii Y., Iida M., Ishii T., Iwasaki R., Kimura N., Kobayashi T., Nakadaira T., Nakayoshi K., Ohhata H., Okamura T., Okada R., Sakashita K., Shibata M., Sugano M., Yoshida M., Anerella M., Escallier J., Ganetis G., Ghosh A.
Ключевые слова: accelerator magnets, status, magnetic systems, design, cryogenic systems, joints, quench, recovery characteristics, LTS, NbTi, high field magnets, beam lines
Ogitsu T., Sasaki K., Okamura T., Kobayashi T., Nakamoto T., Yamamoto A., Makida Y., Kimura N., Ohhata H., Fazilleau P., Queinec Y., Charrier J., Allard J., Anstett D., Bargueden P., Boussuge T., Bouty A., Dubois O., Durand G., Gibier D., Gournay J., Pouhalec P.L., Loiseau D., Lotrus P., Moliniй F., Pinvidic B., Zito M.
Ключевые слова: magnetic systems, accelerator magnets, quench detection, control systems, high field magnets, safety, beam lines
Ключевые слова: HTS, magnets, cryogenic systems, cryogenic materials, heat capacity, vehicle applications, experimental results
Nakamoto T., Sasaki K., Araoka O., Fujii Y., Higashi N., Iida M., Ishii T., Kimura N., Kobayashi T., Makida Y., Nakadaira T., Ogitsu T., Ohhata H., Okamura T., Sakashita K., Shibata M., Suzuki S., Yamamoto A., Ichikawa A., Kakuno H., Anerella M., Escallier J., Ganetis G., Ghosh A., Muratore J., Parker B., Wanderer P.
Ключевые слова: accelerator magnets, design parameters, LTS, NbTi, cables, power equipment, status, high field magnets, beam lines
Ogitsu T., Sasaki K., Okamura T., Nakamoto T., Adachi T., Makida Y., Ikedo Y., Nakahara K., Miyake Y., Shimomura K., Strasser P., Kawamura N., Koda A., Yoshida M.
Ключевые слова: design, coils solenoidal, accelerator magnets, cryocoolers, LTS, NbTi, wires, heat losses, quench protection, modeling, high field magnets, muon, beam lines
Ключевые слова: accelerator magnets, quench properties, irradiation effects, cryogenic pumps, design, high field magnets
Mito T., Okamura T., Yanagi N., Imagawa S., Obana T., Hamaguchi S., Oba K., Moriuchi S., Sekiguchi H.
Ключевые слова: LTS, helium supercritical, helical winding, coils, cryogenic systems, fusion magnets, cryostability, heat transfer, test results, high field magnets
Mito T., Okamura T., Yanagi N., Imagawa S., Obana T., Hamaguchi S., Moriuchi S., Sekiguchi H., Ooba K., Komori A.
Ключевые слова: LHC, operational performance, current, helical winding, coils, stability, cryogenic systems, test results, normal zone propagation, LTS
Kuriyama T., Okamura T., Ono M., Oguchi A.(oguchi@mhd.es.titech.ac.jp)
Ключевые слова: HTS, magnets, cryocoolers, modeling, Bi2223/Ag, coils pancake, experimental results, hybrid systems, power equipment
Kuriyama T., Okamura T., Ono M., Oguchi A.(b99b0565@es.titech.ac.jp), Ueda J.
Ключевые слова: HTS, Bi2223, coils pancake, cryocoolers, flux flow resistance, heat leakage, test results, power equipment
Obana T.(obana@post.kek.jp), Tasaki K., Kuriyama T., Okamura T.
Ключевые слова: HTS, coils pancake, thermal stability, numerical analysis, conduction cooled systems, power equipment, magnetic properties
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