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Safety Analysis for Accident-Tolerant Fuels with Increased Enrichment and Extended Burnup

  • Yong-Joon Choi
  • , Kingsley Ogujiuba
  • , Nicholas Rollins
  • , Khang Nguyen
  • , Jason Hou
  • , Una Baker
  • , Ben Lindley

Research output: Book/ReportTechnical Report

Abstract

The ERP research and development efforts in FY22 focused on the safety analysis of ATF with increased enrichment and extended burnup to provide scientific knowledge of the ATF fuel performance, failure mechanism and source term analysis during severe accident of the NPP. FeCrAl clad ATF was selected as basis of the reactor fuel. An optimized equilibrium cycle was developed for 24-months extended burnup operation. A 4-loop PWR model under loss-of-coolant accident (LOCA) was assessed and the behavior of the major source term from failed ATF has been analyzed. The result showed that grace to enhanced mechanical characteristics of ATF, the fuel failure starts up to 200~500 seconds later than conventional Zr clad fuel. This time gives sufficient buffer until low pressure safety injection (LPSI) of the emergency core cooling system (ECCS) restarted by the operator which reduces fuel fragmentation, relocation and dispersal (FFRD). As a consequence, the total amount of major radioactive materials released from FeCrAl clad fuel into the reactor containment was found up to three times less compare to Zr clad fuel.
Original languageUndefined/Unknown
DOIs
StatePublished - Aug 1 2022

INL Publication Number

  • INL/RPT-22-68581
  • 150467

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