期刊文献+

Investigation on the Arc Ignition Characteristics and Energy Absorption of Liquid Metal Current Limiter Based on Self-Pinch Effect 被引量:3

Investigation on the Arc Ignition Characteristics and Energy Absorption of Liquid Metal Current Limiter Based on Self-Pinch Effect
在线阅读 下载PDF
导出
摘要 The GaInSn liquid metal current limiter based on the fluid pinch effect has broad application prospects due to its particular properties. However, the limited rated current and abil- ity of power dissipation are the critical problems for its wide application. Firstly, the temperature distribution of the liquid metal current limiter (LMCL) was obtained by experiments with a rated current of 1 kA and the arc ignition phenomenon was observed with 1.5 kA, which indicates that the rated current is mainly limited by the arc rather than the high temperature compared to the traditional switchgears. Furthermore, an improved method is proposed by adding the paralleled pure resistance, impedance or another LMCL element to protect the setup from the fault energy concentration in the setup. The problem of a slower arc voltage increasing rate can be solved by adding a paralleled impedance with suitable parameters. Finally, the current limiting properties based on the improved method were investigated and the alternating oscillating current was found between two paralleled LMCL elements owing to their deviation of arc ignition in reality. The GaInSn liquid metal current limiter based on the fluid pinch effect has broad application prospects due to its particular properties. However, the limited rated current and abil- ity of power dissipation are the critical problems for its wide application. Firstly, the temperature distribution of the liquid metal current limiter (LMCL) was obtained by experiments with a rated current of 1 kA and the arc ignition phenomenon was observed with 1.5 kA, which indicates that the rated current is mainly limited by the arc rather than the high temperature compared to the traditional switchgears. Furthermore, an improved method is proposed by adding the paralleled pure resistance, impedance or another LMCL element to protect the setup from the fault energy concentration in the setup. The problem of a slower arc voltage increasing rate can be solved by adding a paralleled impedance with suitable parameters. Finally, the current limiting properties based on the improved method were investigated and the alternating oscillating current was found between two paralleled LMCL elements owing to their deviation of arc ignition in reality.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第5期531-537,共7页 等离子体科学和技术(英文版)
基金 supported by the Technology Project of State Grid(No.SGSNKYOOKJJS1501564) the National Key Basic Research Program of China(973 Program)(No.2015CB251005)
关键词 ARC liquid metal current limiter fluid pinch effect arc, liquid metal current limiter, fluid pinch effect
  • 相关文献

参考文献17

  • 1Kratzschmar A, Berger F, Terhoeven P, et al. 2000, Liquid Metal Current Limiters. 20th Int. Conf. on Electric Contacts, Stockholm, Sweden.
  • 2Skindhoj J, Glatz-Reichenbach J, Strumpler R. 1998, IEEE Transactions on Power Delivery, 13: 489.
  • 3Duggal A R, Sun F G, Levinson L M. 1998, High power current limiting with conductor-filled polymer composites. Proc. 44th Holm Conf. Elect. Contacts, Arlington, USA.
  • 4Ueda T, Morita M, Arita H, et al. 1993, IEEE Transactions on Power Delivery, 8: 1796.
  • 5Meyer C, Kollensperger P, De Doncker R W. 2004, Design of a Novel Low Loss Fault Current Limiter for Medium-Voltage Systems. 19th Applied Power Electronics Conference and Exposition, California.
  • 6Steurer Michael, Frohlich Klaus. 1998, Current limiters-state of the art. Fourth Workshop & Conference on EHV Technology CSIC Auditorium, Bangalore.
  • 7He H, Rong M, Wu Y, et al. 2013, IEEE Transactions on Power Delivery, 28: 2566.
  • 8Wada Y, Takagi Y, Mori T, et al. 1980, IEEE Transactions on Industry Applications, 1A-16: 30.
  • 9Itoh T, Miyamoto T, Wada Y, et al. 1973, IEEE Transactions on Power Apparatus and Systems, PAS-92: 1292.
  • 10Niayesh K, Tepper J, Konig F. 2006, IEEE Transactions on Components and Packaging Technologies, 29: 303.

同被引文献34

引证文献3

二级引证文献6

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部