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Surrogate Distributed Radiological Sources - Part II: Aerial Measurement Campaign: aerial measurement campaign

  • Jayson R. Vavrek
  • , C. Corey Hines
  • , Mark S. Bandstra
  • , Daniel Hellfeld
  • , Maddison A. Heine
  • , Zachariah M. Heiden
  • , Nick R. Mann
  • , Brian J. Quiter
  • , Tenzing H.Y. Joshi

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

In this second part of a multipaper series, we present results from outdoor aerial measurements of surrogate distributed gamma-ray sources. We detail the design, manufacture, and testing of 300 individual ~7 mCi Cu-64 sealed sources at the Washington State University (WSU) research reactor and their deployment in various source patterns (each comprising up to 100 point sources) during the aerial measurement campaign. We show the results of two such measurements, in which approximate source shapes and qualitative source intensities can be seen from the count rate versus position plots, even without performing reconstructions. We also detail our efforts in ground-truthing the deployed sources and comparing measured gamma-ray data to model predictions. In particular, we compare measured versus expected count data using the Poisson deviance formalism of Part I to evaluate whether the fielded surrogate point-source arrays "look like"their truly continuous distributed source analogs. More generally, we find that the point-source array technique provides high source placement accuracy, relative ease of quantifying the true source configuration, scalability to source dimensions of ?100 m, ease of reconfiguration and removal, and relatively low dose to personnel. Finally, we consider potential improvements and generalizations of the point-source array technique for future measurement campaigns.
Original languageEnglish
Pages (from-to)224-233
Number of pages10
JournalIEEE Transactions on Nuclear Science
Volume71
Issue number2
Early online dateJan 9 2024
DOIs
StatePublished - Feb 1 2024

Keywords

  • airborne survey
  • Contamination
  • Copper
  • Detectors
  • distributed sources
  • gamma-ray imaging
  • Inductors
  • Neutrons
  • Poisson deviance
  • Pollution measurement
  • Radiation effects
  • Airborne survey

INL Publication Number

  • INL/JOU-24-77110
  • 170881

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