432 / 2017-04-27 21:05:13
Insulation Design of Direct Current Resistive Type Superconducting Fault Current Limiter
13703,13546,13704,13705
Draft Accepted
Kun Yang / Xi' an Jiaotong University
Yi Li / Xi' an Jiaotong University
Muhammad Junaid / Xi' an Jiaotong University
Zhenxing Wang / Xi'an Jiaotong University
zhiyuan liu / State Key Laboratory of Electric Power Equipment, Xi’an Jiaotong University
Yingsan Geng / State Key Laboratory of Electric Power Equipment, Xi’an Jiaotong University
Jianhua Wang / Xi'an Jiaotong University
Satoru Yanabu / Xi‘an Jiaotong University
DC resistive type superconducting fault current limiters (SFCL) can be used in multi-terminal DC systems for fault current limiting. They help DC circuit breakers interrupt fault current with lower interruption overvoltage and they improve the interruption reliability. Insulation design is necessary for the application of SFCLs. The objective of this paper is to design the insulation of DC resistive type SFCLs. Firstly, Finite Element Method (FEM) is used to simulate the electric field distribution in the SFCL. The simulation result shows that the strongest electric field is between the superconducting coils and the dewar vessel. Bubble generation inside of SFCLs is analyzed, and so is the subcooled effects. The arrangement of the superconducting coils and the dewar vessel is optimized to achieve a good insulation ability, considering the insulation degradation caused by bubbles. A shield for bubbles is suggested to put between the superconducting coils and the dewar vessel. Besides, vertical arrangement of the superconducting coils shows a better insulation ability than horizontal arrangement. Finally, a 10 kV DC resistive SFCL is designed.
Important Date
  • Conference Date

    Oct 22

    2017

    to

    Oct 25

    2017

  • Jan 04 2017

    Abstract Notification of Acceptance

  • Mar 10 2017

    Draft Paper Acceptance Notification

  • Jun 30 2017

    Final Paper Deadline

  • Oct 25 2017

    Registration deadline

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