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Nuclear waste transmutation performance assessment of an accelerator driven subcritical reactor for waste transmutation (ADS-NWT)

  • Zhong Chen
  • , Yican Wu
  • , Baoxin Yuan
  • , Dongmei Pan
  • Southwest University of Science and Technology
  • Chinese Academy of Sciences
  • China Academy of Engineering Physics
  • University of Science and Technology of China

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

As a concept of lead-bismuth cooled accelerator driven sub-critical reactor, ADS-NWT was proposed for nuclear waste transmutation by FDS Team. In this paper, preliminary transmutation performance assessment on ADS-NWT was performed by using metallic dispersion fuel and metal alloy fuel. The studies were committed to improving the Discharge Transmutation Support Ratio (DTSR) under three key design constraints. Subject to the design constraints on the effective multiplication factor, the peak linear power and the peak fast neutron fluence, the design studies had been performed for ADS-NWT blanket. From these studies, the results showed that the maximum DTSR was primarily related to the MA/Pu ratio, the peak fast neutron fluence and fuel design under imposed design constraints. The maximum DTSR could be ∼47 in one refueling cycle time when the thermal power was fixed to 1000 MW and the effective multiplication factor was 0.98 based on the specific design.

Original languageEnglish
Pages (from-to)723-727
Number of pages5
JournalAnnals of Nuclear Energy
Volume75
DOIs
StatePublished - Jan 2015

Keywords

  • Accelerator Driven System
  • Lead-bismuth eutectic
  • Transmutation performance assessment

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