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Development of unfolding method to obtain pin-wise source strength distribution from PWR spent fuel assembly measurement

  • Yos Panagaman Sitompul*
  • , Hee Sung Shin
  • , Se Hwan Park
  • , Jong Myeong Oh
  • , Hee Seo
  • , Ho Dong Kim
  • *Corresponding author for this work
  • Korea Atomic Energy Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

An unfolding method has been developed to obtain a pin-wise source strength distribution of a 14 × 14 pressurized water reactor (PWR) spent fuel assembly. Sixteen measured gamma dose rates at 16 control rod guide tubes of an assembly are unfolded to 179 pin-wise source strengths of the assembly. The method calculates and optimizes five coefficients of the quadratic fitting function for X-Y source strength distribution, iteratively. The pin-wise source strengths are obtained at the sixth iteration, with a maximum difference between two sequential iterations of about 0.2%. The relative distribution of pin-wise source strength from the unfolding is checked using a comparison with the design code (Westinghouse APA code). The result shows that the relative distribution from the unfolding and design code is consistent within a 5% difference. The absolute value of the pin-wise source strength is also checked by reproducing the dose rates at the measurement points. The result shows that the pin-wise source strengths from the unfolding reproduce the dose rates within a 2% difference.

Original languageEnglish
Pages (from-to)433-441
Number of pages9
JournalJournal of Nuclear Science and Technology
Volume50
Issue number4
DOIs
StatePublished - 2013.04

Keywords

  • Dose rate contribution
  • Pin-wise source strength distribution
  • Quadratic fitting Function
  • Unfolding method

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