• DocumentCode
    1549589
  • Title

    Method to Calibrate Fission Chambers in Campbelling Mode

  • Author

    Geslot, Benoit ; Unruh, Troy C. ; Filliatre, Philippe ; Jammes, Christian ; Salvo, Jacques Di ; Bréaud, Stéphane ; Villard, Jean-François

  • Author_Institution
    CEA, DEN, Cadarache, SPEx/LDCI, S-Paul-lez-Durance, France
  • Volume
    59
  • Issue
    4
  • fYear
    2012
  • Firstpage
    1377
  • Lastpage
    1381
  • Abstract
    Fission chambers are neutron detectors which are widely used to instrument experimental reactors such as material testing reactors or zero power reactors. In the presence of a high level mixed gamma and neutron flux, fission chambers can be operated in Campbelling mode (also known as “fluctuation mode” or “mean square voltage mode”) to provide reliable and precise neutron related measurements. Fission chamber calibration in Campbelling mode (in terms of neutron flux) is usually done empirically using a calibrated reference detector. A major drawback of this method is that calibration measurements have to be performed in a neutron environment very similar to the one in which the calibrated detector will be used afterwards. What is proposed here is a different approach based on characterizing the fission chamber response in terms of fission rate. This way, the detector calibration coefficient is independent from the neutron spectrum and can be determined prior to the experiment. The fissile deposit response to the neutron spectrum can then be assessed independently by other means (experimental or numerical). In this paper, the response of CEA-made miniature fission chambers in Campbelling mode is studied. A theoretical model of the signal is used to calculate the calibration coefficient. The model\´s input parameters come from statistical distribution of individual pulses. Supporting measurements were made in the CEA Cadarache zero power reactor MINERVE and results are compared to an empirical Campbelling mode calibration. The tested fission chamber calibration coefficient is roughfly 2 10^{-26} {\\rm A}^{2} /Hz/(c/s). Both numerical and empirical methods give consistent results, however a deviation of about 15% was observed.
  • Keywords
    Calibration; Detectors; Inductors; Jamming; Neutrons; Power measurement; Shape; Calibration; Campbelling mode; fission chamber; neutron detector;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2012.2198669
  • Filename
    6227313