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Neutronic assessment of stringer fuel assembly design for liquid-salt-cooledvery high temperature reactor (LS-VHTR).
Szakaly, F. J. ; Kim, T. K. ; Taiwo, T. A.
Argonne National Laboratory
关键词: Proliferation;    98 Nuclear Disarmament, Safeguards, And Physical Protection;    Isotope Separation;    38 Radiation Chemistry, Radiochemistry, And Nuclear Chemistry;    Targets;   
DOI  :  10.2172/895665
RP-ID  :  ANL-GENIV-074
RP-ID  :  DE-AC02-06CH11357
RP-ID  :  895665
美国|其它
来源: UNT Digital Library
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【 摘 要 】

Neutronic studies of 18-pin and 36-pin stringer fuel assemblies have been performed to ascertain that core design requirements for the Liquid-Salt Cooled Very High Temperature Reactor (LS-VHTR) can be met. Parametric studies were performed to determine core characteristics required to achieve a target core cycle length of 18 months and fuel discharge burnup greater than 100 GWd/t under the constraint that the uranium enrichment be less than 20% in order to support non-proliferation goals. The studies were done using the WIMS9 lattice code and the linear reactivity model to estimate the core reactivity balance, fuel composition, and discharge burnup. The results show that the design goals can be met using a 1-batch fuel management scheme, uranium enrichment of 15% and a fuel packing fraction of 30% or greater for the 36-pin stringer fuel assembly design.

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