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1)  CD insulated HTS cable
低温绝缘高温超导电缆
1.
During the production of CD insulated HTS cables,the taping quality of polypropylene laminated paper(PPLP) insulation affects directly the electrical performance of the cable and the taping tension plays an important role in taping quality.
低温绝缘高温超导电缆的制造中,聚丙烯复合纤维纸(PPLP)绝缘的绕包质量直接影响到电缆的电气性能,而绕包张力是其中关键因素。
2)  CD HTSC cable
CD绝缘高温超导电缆
1.
This paper presents first the calculation of self and mutual inductances of a CD HTSC cable in case its return current that flows through shield is equal and opposite to the phase current in conductor as well as the design procedure for uniform distribution of a multilayer superconducting conductor and shield of CD HTSC cables.
文中首次提出低温绝缘(CD)高温超导电缆在屏蔽层通过与导体电流相等的反向电流条件下,屏蔽层自感、屏蔽层层间互感、屏蔽层与导体间互感的计算式,以及CD绝缘高温超导电缆屏蔽和导体电流均匀分布的设计计算方法。
3)  structure design of CD HTSC cables
CD绝缘高温超导电缆结构设计
4)  high temperature superconducting cable
高温超导电缆
1.
Study of auto-reclosure strategy for high temperature superconducting cable;
高温超导电缆自动重合闸方案研究
5)  HTS power cable
高温超导电缆
1.
After the completionof 10-m HTS power cable in 2003, the building, commissioning and electricaltest of 75-m HTS power cable have been finished in the end of 2004.
在继2003年完成10米三相高温超导电缆之后,我们于2004年年底成功完成了75米高温超导电缆的组装、调试和通电试运行。
2.
And it indicates the development of terminations for a HTS power cable mainly in the developed country such as the USA, Japan and Denmark, and meantime it also indicates this in our country.
简单介绍了高温超导电缆的终端的基本结构特点与作用等 ;并主要介绍了工业化国家中美国、日本、丹麦等所研制的 HTS电缆终端以及目前我们所研制的终端情况。
6)  HTS cable
高温超导电缆
1.
Developing the under-unit of the HTS cable′s monitoring and protection device;
高温超导电缆监测与保护系统下层机单元的研制
2.
Research in the Insulation of the Cryostat, Terminator and Cryostat Connecter of HTS Cable;
高温超导电缆本体绝缘及终端和中间连接体绝缘研究
3.
one of the main sub-systems of the experimental device, a cryogenic system uses the sub-cooled liquid nitrogen (LN 2) pressurized to cool the HTS cable and its terminations.
低温系统是该试验装置的一个主要分系统 ,采用增压过冷液氮冷却高温超导电缆及其电流引线 ,是国内首次采用过冷液氮循环冷却高温超导电缆的低温系统。
补充资料:低温


低温
hypothermia

  低温状态下脑组织对缺氧的耐受性明显增加。体温低于37℃时,每减低1℃,脑组织代谢率减少6.7%,颅内压减低5.5%,在人工呼吸、心脏按压的同时或稍后应给予降温处理,可采用正规冬眠疗法使体温降至肛温35℃左右,目前尤为重视头部局部降温,戴冰帽,头温降至32℃左右,重症要降温3~5天。
  
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