SMES Model Device Cooled by Liquid Hydrogen Flow through Thermosiphon Loop
Author:
Affiliation:
1. High Energy Accelerator Research Organization
2. Sophia University
3. Mayekawa MFG, Co., Ltd.
4. National Institute for Fusion Science
5. Tohoku University
Publisher
Cryogenic Association of Japan
Subject
Automotive Engineering
Link
https://www.jstage.jst.go.jp/article/jcsj/57/4/57_241/_pdf
Reference6 articles.
1. 1) T. Yagai, et al.: “Development of large current capacity MgB2 conductors as a potential application of large scale SMES magnets,” TEION KOGAKU 56 (2021) 270-276 (in Japanese) 谷貝 剛ら:「大型 SMES 磁石応用への大電流容量 MgB2 導体開発」,低温工学 56 (2021) 270-276
2. 2) T. Komagome, et al.: “Development of MgB2 Rutherford cable for large–scale SMES coils cooled by liquid hydrogen,” TEION KOGAKU 55 (2020) 36-43 (in Japanese) 駒込敏弘ら:「液体水素冷却大型 SMES コイル用 MgB2 ラザフォード導体の開発」,低温工学 55 (2020) 36-43
3. 3) Y. Makida, et al.: “Performance of a 10-kJ SMES model cooled by liquid hydrogen thermos-siphon flow for ASPCS study,” IOP Conf. Series: Materials Science and Engineering 101 (2015) 012028
4. 4) J.C. Lottin and F. P. Juste : “Liquid helium thermosiphon for the 4 tesla CMS solenoid,” Advances in Cryogenic Engineering, 43 (1998) 1505-1511
5. 5) T. Shintomi, T. Tomaru and K Yajima : “Conduction cooling using ultra-pure fine metal wire II - Pure Copper -,” TEION KOGAKU 46 (2011) 421-425 (in Japanese) 新冨孝和、都丸隆行、矢島健児:「超高純度金属細線による伝導冷却 II-高純度銅-」、低温工学 46 (2011) 421-425
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1. Demonstration of 10 KJ-Capacity Energy Storage Coil Made of MgB2 With Liquid Hydrogen Indirect Cooling;IEEE Transactions on Applied Superconductivity;2023-08
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