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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Development of Large-Bore Superconducting Magnet With Zero-Vapor Liquid Helium
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Development of Large-Bore Superconducting Magnet With Zero-Vapor Liquid Helium

机译:零蒸气氦气大孔超导磁体的研制

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A large bore NbTi superconducting magnet with liquid helium bath cooling has been developed for a micro-sized superconducting magnetic energy storage (SMES). The superconducting magnet has the clear bore of 480 mm, outer diameter of 550 mm and height of 500 mm. The magnet system is cooled in a compact cryostat with two GM cryocoolers. One of the cryocoolers is used to cool the thermal shielding. Another is used to re-condense the helium evaporation. A pair of high temperature superconducting current leads is used to reduce heat load to the cryostat. The operating current of the SMES system is rated at 325 A. Maximum energy storage is evaluated as 1.0 MJ at the rated operating current. Test results show that the stored energy can be dumped at the power of 7 kW to a dummy resistor load. This superconducting magnet system can be demonstrated as an Uninterruptible Power Supply (UPS). The superconducting magnet and the cryogenic system are described in this paper.
机译:已经开发出具有液氦浴冷却的大口径NbTi超导磁体,用于超小型超导磁能存储(SMES)。超导磁体的净孔径为480 mm,外径为550 mm,高度为500 mm。磁体系统在带有两个GM低温冷却器的紧凑型低温恒温器中冷却。其中一种低温冷却器用于冷却热屏蔽。另一个用于重新冷凝氦气蒸发。一对高温超导电流引线用于减少低温恒温器的热负荷。 SMES系统的工作电流额定为325A。在额定工作电流下,最大能量存储评估为1.0 MJ。测试结果表明,存储的能量可以以7 kW的功率倾倒到虚拟电阻负载上。这种超导磁体系统可以证明为不间断电源(UPS)。本文介绍了超导磁体和低温系统。

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