Published September 2009 | Version v1
Journal article

On void reactivity limitation for the core loaded with mixed nitride fuels

  • 1. Tokyo Inst. of Technology, Dept. of Nuclear Engineering, Tokyo (Japan)
  • 2. Japan Nuclear Energy Safety Organization, Nuclear Energy System Safety Division, Tokyo (Japan)

Description

Self-controllability and self-terminability are strongly required as passive safety features in future liquid-metal FBR (LMFBR) commercialization. In this study, the self-terminability of the MN-fueled core was focused on. The FBR cores including the MN-fueled core should be designed to eliminate severe recriticality leading to energetics during core disruptive accidents (CDAs) because the cores are not designed to operate in an optimum configuration from a reactivity point of view. In addition, in the case of the MN-fueled core, the nitrogen gas N2 generated by the thermal dissociation, one of the unique phenomena of the nitride fuel, would give another cause of reactor vessel failure. Such a mechanical effect would strongly depend on the magnitude of the void reactivity. In this study, the allowable maximum void reactivity of the MN-fueled core to maintain the mechanical integrity of the reactor vessel was evaluated against an Unprotected Loss-of-Flow (ULOF) accident by using ARGO taking into account the equation-of-state of the MN fuel. By considering the partial-pressure-dependent thermal dissociation process, the design limit of the core void reactivity (positive sum) was estimated to be 6.2$. (author)

Availability note (English)

Available from http://dx.doi.org/10.3327/jnst.46.981

Additional details

Identifiers

Publishing Information

Journal Title
Journal of Nuclear Science and Technology (Tokyo)
Journal Volume
46
Journal Issue
10
Journal Page Range
p. 981-994
ISSN
0022-3131

Optional Information

Notes
18 refs., 12 figs., 5 tabs.