首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Design and operation of the sub-cooled helium test facility for the LHD helical coils
【24h】

Design and operation of the sub-cooled helium test facility for the LHD helical coils

机译:用于LHD螺旋线圈的过冷氦测试设备的设计和运行

获取原文
获取原文并翻译 | 示例

摘要

In order to increase the cooling stability of the helical coils, an upgrade of the cooling scheme is planned from 4.4 K pool-boiling to 3.0 K sub-cooled helium of flow rate of about 50 g/sec. We have designed and constructed a R&D coil made of the same superconductor as that used for the helical coils and a sub-cooled helium test facility on the assumption of the application for actual large helical device (LHD). This facility is composed of decompression tank for the sub-cooled helium generation, the R&D coil, a current lead storage tank, etc., installed in a cryostat with a liquid nitrogen shield. Two stage cryogenic compressors are installed in the top flange, and sub-cooled helium is generated by decompressing of saturated liquid helium from 0.12 MPa to 24 kPa. Liquid helium of 4.4 K and 0.12 MPa is heat exchanged by the sub-cooled helium in the decompression tank and supplied to the R&D coil from the bottom. The sub-cooling R&D experiment has been carried out. As the results of experiment, we found that the saturated liquid helium could be cooled from 4.4 K to 3.0 K in 8 hours and maintained at 3.0 K. The rotation speed of the first and second stage cryogenic compressors were about 87,000 and 88,000 rpm, respectively. These values agreed well with the designed values of the two-stage cryogenic compressors. Finally, this facility operated stably during 8 days of the two sub-cooling R&D experiment campaigns.
机译:为了提高螺旋线圈的冷却稳定性,计划将冷却方案的升级方案从4.4 K池沸腾升至流速约为50 g / sec的3.0 K过冷氦。根据实际的大型螺旋装置(LHD)的应用,我们已经设计和建造了由与螺旋线圈相同的超导体和过冷氦测试设备构成的R&D线圈。该设备由用于产生过冷氦气的减压罐,R&D盘管,电流引线储罐等组成,安装在带有液氮防护罩的低温恒温器中。两级低温压缩机安装在顶部法兰中,通过将饱和液氦从0.12 MPa减压到24 kPa来产生过冷氦。 4.4 K和0.12 MPa的液氦通过减压罐中的过冷氦进行热交换,并从底部供应到研发盘管。已进行过冷技术研发实验。根据实验结果,我们发现饱和液氦可以在8小时内从4.4 K冷却到3.0 K,并保持在3.0K。第一级和第二级低温压缩机的转速分别约为87,000 rpm和88,000 rpm 。这些值与两级低温压缩机的设计值非常吻合。最后,该设备在两次过冷R&D实验活动的8天中稳定运行。

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