• DocumentCode
    300994
  • Title

    TFTR neutral beam control and monitoring for DT operations

  • Author

    O´Connor, T. ; Kamperschroer, J. ; Chu, J. ; Cropper, M. ; Fleming, G. ; Grisham, L. ; Hirsch, Joy ; Lagin, L. ; Lawson, J. ; Kolinchak, G. ; Marsala, R. ; McCormack, B. ; Newman, R. ; Oldaker, M. ; Ramakrishnan, S. ; Ossi, G. ; Silber, K. ; Stevenson, T.

  • Author_Institution
    Plasma Phys. Lab., Princeton Univ., NJ, USA
  • Volume
    1
  • fYear
    1995
  • fDate
    30 Sep-5 Oct 1995
  • Firstpage
    530
  • Abstract
    Record fusion power output has recently been obtained in TFTR with the injection of deuterium and tritium neutral beams. This significant achievement was due in part to the controls, software, and data processing capabilities added to the neutral beam system for DT operations. Chief among these improvements was the addition of SUN workstations and large dynamic data storage to the existing Central Instrumentation Control and Data Acquisition (CICADA) system. Essentially instantaneous lookback over the recent shot history has been provided for most beam waveforms and analysis results. Gas regulation controls allowing remote switchover between deuterium and tritium were also added. With these tools, comparison of the waveforms and data of deuterium and tritium for four test conditioning pulses quickly produced reliable tritium setpoints. Thereafter, all beam conditioning was performed with deuterium, thus saving the tritium supply for the important DT injection shots. The lookback capability also led to modifications of the gas system to improve reliability and to control ceramic valve leakage by backbiasing. Other features added to improve the reliability and availability of DT neutral beam operations included master beamline controls and displays, a beamline thermocouple interlock system, a peak thermocouple display, automatic gas inventory and cryo panel gas load monitoring, beam notching controls, a display of beam/plasma interlocks, and a feedback system to control beam power based on plasma conditions
  • Keywords
    Tokamak devices; computerised monitoring; fusion reactor instrumentation; fusion reactors; plasma beam injection heating; DT operations; SUN workstations; TFTR neutral beam control; automatic gas inventory; backbiasing; beam conditioning; beam notching controls; beamline thermocouple interlock system; ceramic valve leakage; cryo panel gas load monitoring; data processing capabilities; deuterium neutral beams; feedback system; gas regulation controls; instantaneous lookback; master beamline controls; peak thermocouple display; tritium neutral beams; Automatic control; Control systems; Data processing; Deuterium; Monitoring; Particle beams; Plasma displays; Power system reliability; Sun; Workstations;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Fusion Engineering, 1995. SOFE '95. Seeking a New Energy Era., 16th IEEE/NPSS Symposium
  • Conference_Location
    Champaign, IL
  • Print_ISBN
    0-7803-2969-4
  • Type

    conf

  • DOI
    10.1109/FUSION.1995.534276
  • Filename
    534276