在26篇文献的基础上综述了超导电缆本体及终端结构和绝缘特点.分析了不同绝缘结构的特点及主要绝缘材料常温和低温条件下的电气及机械性能.固体绝缘在低温下具有更优异的电气性能,但机械性能下降.EPR绝缘在液氮低温下的机械性能优于同条件下PE及XLPE的性能.液氮浸渍复合绝缘结构较易产生局部放电,纤维基绝缘材料的耐局部放电性能比薄膜材料差.提高液氮浸渍复合绝缘中液氮的压力可提高绝缘层局部放电的起始放电电压.
参考文献
[1] | K Ueda.R·D of HTS power cable and fault current limiter in Super-ACE project[J].Physica C Superconductivity,2003 |
[2] | 滕玉平;肖立业.10.5 kV/1.5kA高温超导电力电缆电场分析及电缆绝缘[J].电工电能新技术 |
[3] | N Kelley.HTS cable system demonstration at Detroit Edison[J].IEEE,2001 |
[4] | D W Von Dollen.High temperature superconducting cable technology[C].Power Cable and Accessories 10~500kV,1993 |
[5] | 徐乃英.超导技术的发展及其应用[J].电线电缆,2000(02):3-11. |
[6] | Y B Lin.Development and testing of 10.5kV/1.5kAHTS power cable[C].ICEC20,2004 |
[7] | P. W. Fisher;M. J. Cole;J. A. Demko;C. A. Foster;M. J. Gouge;R. W. Grabovickic;J. W. Lue;J. P. Stovall;D. T. Lindsay;M. L. Roden;J. C. Tolbert .Design, analysis, and fabrication of a tri-axial cable system[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2003(2 Pt.2):1938-1941. |
[8] | M J Gouge.Development and testing of HTS cable and terminations at ORNL[J].IEEE Transactions on Applied Superconductivity,2001(11) |
[9] | Takato Masuda.Development of termination for the 77kV-class high TC superconducting power cable[J].Power Engineering Review IEEE,1997(17):37-38. |
[10] | M Kosski.Development and tests of extruded polyethylene insulated superconducting cable[A].,1998 |
[11] | M Kosaki.Development of cross-linked polyethylene insulated superconducting cable[M].Proceedings of the Twenty-first Symposium on Electrical Insulation Material,1998 |
[12] | M Kosaki.Research and development of electrical insulation of superconducting cables by extruded polymers[J].IEEE Electron Device Letters,1996 |
[13] | Yukio Minzuno.Evaluation of ethylene propylene rubber as an electrical and electrical insulation material of superconducting cable[C].Proceedings of the 3rd Interna tional Conference on Properties and Applications of Dielectric Material,1991 |
[14] | C Sumereder .Dielectric measurement on HTS insulation systems for electric power equipment[Z].Elsevier Science B V,2002. |
[15] | Gerhold J.;Tanaka T. .Cryogenic electrical insulation of superconducting power transmission lines: transfer of experience learned from metal superconductors to high critical temperature superconductors[J].Cryogenics,1998(11):1173-1188. |
[16] | Yukio Minzuno.Performance of extruded ethylene-propylene rubber cryogenic power cable[C].Conference record of the 1992 IEEE International Symposium on Electrical Insulation;Baltimore;MD USA;June 7~ 10 |
[17] | Alexander Bulinski;John Densiley.High voltage insulation for power cable utilizing high temperature superconductivity[J].IEEE Electron Device Letters,1999 |
[18] | Hiroshi Suzuki;Toshihiro Takahashi;Tatsuki Okamoto;Shirabe Akita;Yasuo Ozawa .Electrical insulation characteristics of cold dielectric high temperature superconducting cable[J].IEEE transactions on dielectrics and electrical insulation: A publication of the IEEE Dielectrics and Electrical Insulation Society,2002(6):952-957. |
[19] | Kiyotaka Ueda;Osami Tsukamoto;Shigeo Nagaya;Hitoshi Kimura;Shirabe Akita .R&D of a 500 m superconducting cable in Japan[J].IEEE Transactions on Applied Superconductivity: A Publication of the IEEE Superconductivity Committee,2003(2 Pt.2):1946-1951. |
[20] | Hiroshi Suzuki.Electrical insulation characteristics of liquid nitrogen-impregnated laminated paper-insulated cable[C].Proceedings of the 3rd International Conference on Properties and Applications of Dielectric Material;July 8~12,1991 |
[21] | D W Von Dollen.High temperature superconducting cable technology[J].Power Cable and Accessories 10~ 500kV,1993 |
[22] | 柯德刚.硅橡胶在电力电缆附件上的应用[J].有机硅材料,2002(05):18-20,40. |
[23] | G M Hathaway.Dielectric considerations for a superconducting cable termination[J].High Voltage Engineering,1999 |
[24] | 梁曦东.高电压工程[M].北京:清华大学出版社 |
[25] | 王季梅.真空开关[M].北京:机械工业出版社 |
[26] | 孟昭智.真空技术手册[M].哈尔滨:黑龙江科学技术出版社 |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%