Quench Distribution in AU/YBCO Thin Film Meander Lines with a Au Meander Line Heater

금선 히터가 있는 금/YBCO 박막 선에서의 퀜치 분포

  • Kim, H. R. (Korea Electric Power Research Institute) ;
  • J. W. Shim (Korea Electric Power Research Institut) ;
  • O. B. Hyun (Korea Electric Power Research Institut) ;
  • J. M. Oh (Korea Electric Power Research Institute)
  • Published : 2004.04.01

Abstract

We investigated quench distribution in AU/YBCO thin film meander lines with a heater. Quench distribution during faults is important for superconducting fault current limter applications, because uniform quench allows application of higher voltages across the meander lines. AU/YBCO thin films grown on sapphire substrates were patterned into meander lines by photolithography. Gold films grown on the rear sides of the substrates were also patterned into meander lines, and used as heaters. Meander lines on the front and the rear sides were connected in parallel. The meander lines were subjected to simulated AC fault currents for quench measurements during faults. They were immersed in liquid nitrogen during the experiment for effective cooling. Resistance of the AU/YBCO meander lines initially increased more rapidly with the rear heater than without, and consequently the fault current was limited more. The resistance subsequently became similar, The resistance distribution was more uniform with the heater, especially during the initial quench. Quench was completed more uniformly and significantly earlier. This resulted in uniform distribution of dissipated power. These results could be explained with the concept of quench propagation, which was accelerated by heat transfer across the substrate from the rear heater.

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