• DocumentCode
    1445265
  • Title

    The AC Loss Measurement of the KSTAR PF1 Coils During the First Commissioning

  • Author

    Lee, H.J. ; Oh, D.K. ; Chu, Y. ; Park, Y.M. ; Park, H.T. ; Choi, J.H. ; Hahn, S.H. ; Park, K.R. ; Oh, Y.K. ; Yang, H.L.

  • Author_Institution
    Nat. Fusion Res. Inst., Daejeon, South Korea
  • Volume
    20
  • Issue
    3
  • fYear
    2010
  • fDate
    6/1/2010 12:00:00 AM
  • Firstpage
    551
  • Lastpage
    555
  • Abstract
    The AC loss in a large superconducting magnet coil shows a tendency to be changed after assembly. For the ac loss measurement of the Korea Superconducting Tokamak Advanced Research (KSTAR) superconducting coils after assembly, several current scenarios, trapezoidal pulses and a DC offset sinusoidal pulses, were applied to the PF1 Upper (U) and Lower (L) coils during the commissioning. The measurement was done once before and once after the plasma discharge experiments. All coil data were obtained by the tokamak monitoring system and helium distribution system which were designed to measure temperature, pressure, and mass-flow at both inlets and outlets of the coils. The PF1 coils of the cable-in-conduit conductor type were made of Nb3Sn superconducting strands, whose winding scheme is 20 layers with each layer having 9 turns. Each has 10 cooling channels for the heat removal by the supercritical helium at 4.5 K. For the trapezoidal pulse tests, the current was increased up to 4 kA with several different ramp rates and a 2 kA DC offset and 0.5 kA sine waves with different frequencies from 0.1 Hz to 0.3 Hz were applied to the coil. According to the analyses, the AC loss was slightly decreased for the same condition after 700 plasma shots. It was believe that such a result was due to reduced inter-strand resistances which changed the transverse resistance between the inter-strands. The coupling time constant was estimated to be 32 ms in the trapezoidal tests and 13.6 ms for the DC offset sinusoidal pulses. The former is larger than the latter because of the effect of the jacket eddy current loss due to Incoloy 908 which is a ferromagnetic material. Considering the jacket eddy current losses, the coupling time constant was recalculated and the value estimated to be about 13 ms for all current wave forms during first commissioning.
  • Keywords
    Tokamak devices; eddy current losses; fusion reactor design; fusion reactor materials; superconducting coils; superconducting magnets; AC loss; DC offset sinusoidal pulses; Incoloy 908; KSTAR PF1 coils; Korea superconducting tokamak advanced research; Nb3Sn superconducting strands; PF1 lower coil; PF1 upper coil; cable-in-conduit conductor type; coil data; cooling channels; coupling time constant; ferromagnetic material; heat removal; helium distribution system; interstrand resistances; jacket eddy current loss; large superconducting magnet coil; mass-flow; plasma discharge experiments; plasma shots; ramp rates; sine waves; supercritical helium; tokamak monitoring system; trapezoidal pulses; winding scheme; ${rm Nb}_{3}{rm SN}$; CICC AC loss; DC offset sinusoidal pulse; KSTAR; trapezoidal pulse;
  • fLanguage
    English
  • Journal_Title
    Applied Superconductivity, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8223
  • Type

    jour

  • DOI
    10.1109/TASC.2010.2040264
  • Filename
    5433278