• Title of article

    Advanced antenna system for Alfvén wave plasma heating and current drive in TCABR tokamak

  • Author/Authors

    Ruchko، نويسنده , , L.F. and Ozono، نويسنده , , Daniel Jackson E. and Galvمo، نويسنده , , R.M.O. and Nascimento، نويسنده , , I.C. and Degasperi، نويسنده , , F.T. and Lerche، نويسنده , , E.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 1998
  • Pages
    14
  • From page
    15
  • To page
    28
  • Abstract
    An advanced antenna system that has been developed for investigation of Alfvén wave plasma heating and current drive in the TCABR tokamak is described. The main goal was the development of such a system that could insure the excitation of travelling single helicity modes with predefined wave mode numbers M and N. The system consists of four similar modules with poloidal windings. The required spatial spectrum is formed by proper phasing of the RF feeding currents. The impedance matching of the antenna with the four-phase oscillator is accomplished by resonant circuits which form one assembly unit with the RF feeders. The characteristics of the antenna system design with respect to the antenna-plasma coupling and plasma wave excitation, for different phasing of the feeding currents, are summarised. The antenna complex impedance Z=ZR+ZI is calculated taking into account both the plasma response to resonant excitation of fast Alfvén waves and the nonresonant excitation of vacuum magnetic fields in conducting shell. The matching of the RF generator with the antenna system during plasma heating is simulated numerically, modelling the plasma response with mutually coupled effective inductances with corresponding active ZR and reactive ZI impedances. The results of the numerical simulation of the RF system performance, including both the RF magnetic field spectrum analysis and the modelling of the RF generator operation with plasma load, are presented.
  • Keywords
    TCABR tokamak , Alfvén wave plasma heating , Antenna System
  • Journal title
    Fusion Engineering and Design
  • Serial Year
    1998
  • Journal title
    Fusion Engineering and Design
  • Record number

    2364927