• DocumentCode
    3348126
  • Title

    Performance of a straw-based portable neutron coincidence/multiplicity counter

  • Author

    Lacy, Jeffrey L. ; Athanasiades, Athanasios ; Sun, Liang ; Martin, Christopher S. ; Vazquez-Flores, Gerson J. ; Mukhopadhyay, Sanjoy

  • Author_Institution
    Proportional Technol., Inc., Houston, TX, USA
  • fYear
    2011
  • fDate
    23-29 Oct. 2011
  • Firstpage
    529
  • Lastpage
    532
  • Abstract
    We propose a boron-coated straw (BCS) based fission counter that incorporates a 3×20 array of individually sealed BCS detectors, each 4.43 mm in diameter and 48 cm long. The straws are embedded inside a high-density polyethylene block with dimensions 48.3×38.1×5.08 cm3 (H×W×D), matching the outer dimensions of a commercially available fission counter (Ortec Fission Meter). The latter consists of two folding panels, each comprised of a single row of 3He tubes in front of a 48.3×38.1×2.54 cm3 (H×W×D) moderator slab. The 3He tubes, 15 in each panel, are 2.54 cm (1 inch) in diameter, 48.3 cm long, and pressurized to 7.5 atm. The total volume of 3He contained in the system is 55 liters. The response of the two systems - two BCS panels, and Ortec FM - was measured with a 252Cf source at various distances. The source was configured either with no moderation, or with a 2.5-inch thick moderator around it. Measurements were repeated both indoors, in a laboratory area, and outdoors, in an open space. The two BCS panels were placed adjacent to one another, with the source centered between them, 91 cm above the ground. The FM was positioned in a similar manner, with its two panels unfolded (3He tubes facing the source). The results show that the two systems have similar response to the unmoderated source when the source is near. As the source moves further away, the ratio BCS-to-3He drops to about 0.4. This is due to the fact that the Ortec FM is more sensitive to lower energy neutrons that have scattered in the ground and eventually reach the detector. For the same reason, the straw-based system response to the moderated source is about 30% that of the FM response. Here, neither the location (outdoors/indoors), nor the distance, play a significant role, since a sufficient fraction of neutrons are moderated at the source- thus minimizing the effect of reflections. Pointing to further applications, a modeling study of a high performance multiplicity detection instrument is also presented. Through use of high straw density, a detection efficiency of 48% can be reached with a rapid die-away time of 50 μs.
  • Keywords
    fission counters; neutron detection; portable instruments; 252Cf source; 3He tubes; BCS detectors; BCS panels; Ortec FM; boron coated straw based fission counter; high density polyethylene block; high performance multiplicity detection instrument; lower energy neutrons; neutron moderation; portable neutron coincidence counter; portable neutron multiplicity counter; pressure 7.5 atm; size 2.54 cm; size 38.1 cm; size 4.43 mm; size 48 cm; size 48.3 cm; size 5.08 cm; straw based portable neutron counter; Concrete; Design methodology; Laboratories; USA Councils;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE
  • Conference_Location
    Valencia
  • ISSN
    1082-3654
  • Print_ISBN
    978-1-4673-0118-3
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2011.6154106
  • Filename
    6154106