...
首页> 外文期刊>Applied Superconductivity, IEEE Transactions on >Design of a Cooling System for a REBCO Insert Coil in a Cryogen-Free 25 T Superconducting Magnet
【24h】

Design of a Cooling System for a REBCO Insert Coil in a Cryogen-Free 25 T Superconducting Magnet

机译:无冷剂25 T超导磁体中REBCO插入线圈的冷却系统设计

获取原文
获取原文并翻译 | 示例
           

摘要

A cryogen-free 20 T superconducting magnet with a 52 mm room-temperature bore was developed and installed in Tohoku University in 2013. This magnet consists of a Bi2223 insert coil, which generates 4.5 T, and outer low-temperature superconducting (LTS) coils. Both coils were cooled by a GM/JT cryocooler with 4.2 W-class cooling capacity at 4.3 K. To generate a higher magnetic field, a new cryogen-free 25 T superconducting magnet using a REBCO insert coil, which generates 11.5 T, and new outer LTS coils is now under development. The magnetic field contribution of this REBCO insert coil is considerably higher than that of the previous Bi2223 insert coil, and the ac-loss of the insert coil during field ramping rises to approximately 9.7 W. The LTS coils have to operate at about 4 K, but the REBCO coil can operate at various temperatures above 4 K. In addition, the cooling capacity of a GM cryocooler is greater than that of a GM/JT cryocooler around 10 K. Thus, the REBCO insert coil is cooled to about 10 K by using two GM cryocoolers, independently of the LTS coils, which are cooled by two GM/JT cryocoolers. To protect the cryocoolers from the leakage field of the magnet, the two GM cryocoolers cool circulating helium gas through heat exchangers, and the gas is transported over a long distance to another heat exchanger provided for the REBCO insert coil. The maximum temperature of the REBCO insert coil was calculated under the most severe condition where an insert coil ac-loss of 9.7 W was generated continuously. And it was confirmed to be less than the target maximum temperature of 12 K.
机译:东北大学于2013年开发并安装了具有52 mm室温孔的无制冷剂20 T超导磁体。该磁体由产生4.5 T的Bi2223插入线圈和外部低温超导(LTS)线圈组成。两个线圈均通过GM / JT低温冷却器进行冷却,在4.2 K时的冷却能力为4.2 W级。为了产生更高的磁场,使用REBCO插入线圈产生的新的无制冷剂25 T超导磁体产生了11.5 T外部LTS线圈现在正在开发中。此REBCO插入线圈的磁场贡献明显高于以前的Bi2223插入线圈,并且在磁场倾斜期间插入线圈的ac损耗上升到大约9.7W。LTS线圈必须在大约4 K的功率下工作,但是REBCO盘管可以在高于4 K的各种温度下工作。此外,GM低温冷却器的冷却能力要比GM / JT低温冷却器的冷却能力大10 K左右。因此,REBCO插入线圈通过以下方式冷却到大约10 K:使用两个独立于LTS线圈的GM低温冷却器,由两个GM / JT低温冷却器冷却。为了保护低温冷却器免受磁体的泄漏场的影响,两个GM低温冷却器通过热交换器冷却循环的氦气,然后将气体长距离输送到为REBCO插入盘管提供的另一个热交换器。在最严酷的条件下计算REBCO插入线圈的最高温度,在该条件下,连续产生9.7 W的插入线圈交流损耗。并确认其低于目标最高温度12K。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号