Development and test in grid of 630 kVA three-phase high temperature superconducting transformer |
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Authors: | Yinshun WANG Xiang ZHAO Junjie HAN Huidong LI Yin GUAN Qing BAO Xi XU Shaotao DAI Naihao SONG Fengyuan ZHANG Liangzhen LIN Liye XIAO |
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Affiliation: | (1) Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing, 100080, China;(2) Technical Center of Tebian Electric Apparatus Stock Co., Ltd, Changji, 831100, China;(3) Beijing Key Laboratory of High Voltage and EMC, School of Electrical and Electronic Engineering, North China Electric Power University, Beijing, 102206, China |
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Abstract: | Abstract A 630-kVA 10.5 kV/0.4 kV three-phase high temperature superconducting (HTS) power transformer was successfully developed
and tested in a live grid. The windings were wound by hermetic stainless steel-reinforced multi-filamentary Bi2223/Ag tapes.
The structures of primary windings are solenoid with insulation and cooling path among layers, and those of secondary windings
consist of double-pancakes connected in parallel. Toroidal cryostat is made from electrical insulating glass fiber reinforced
plastics (GFRP) materials with room temperature bore for commercial amorphous alloy core with five limbs. Windings are laid
in the toroidal cryostat so that the amorphous core operates at room temperature. An insulation technology of double-half
wrapping up the Bi2223/Ag tape with Kapton film is used by a winding machine developed by the authors. Fundamental characteristics
of the transformer are obtained by standard short-circuit and no-load tests, and it is shown that the transformer meets operating
requirements in a live grid.
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Translated from Proceedings of the CSEE, 2007, 27(27): 24–31 [译自:中国电机工程学报] |
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Keywords: | high temperature superconducting (HTS) transformer Bi2223/Ag tape amorphous alloy windings liquid nitrogen |
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