Uncertainty Evaluation of Burnup Properties of Large Fast Reactors Using Data Adjustment Method
The burnup uncertainties of a fast-breeder reactor have been evaluated based on the cross section adjustment technique. A group cross section set, obtained using JENDL-2, was adjusted using experimental data of fast critical assemblies ZPPR and FCA. The adjusted cross section was applied to the neut...
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Veröffentlicht in: | Journal of nuclear science and technology 1991-04, Vol.28 (4), p.275-284 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The burnup uncertainties of a fast-breeder reactor have been evaluated based on the cross section adjustment technique.
A group cross section set, obtained using JENDL-2, was adjusted using experimental data of fast critical assemblies ZPPR and FCA. The adjusted cross section was applied to the neutronics characteristic calculation of a 1,000 MWe-class fast reactor, and the changes in neutronics characteristics and their uncertainties due to the cross section adjustment were evaluated. The burnup reactivity loss was found to increase by 23% when the adjusted cross section library was used. This value corresponds to a reactivity decrease of about 0.7%δ'k at the end of the equilibrium cycle for a typical 1,000 MWe LMFBR of 1 yr operation cycle.
The uncertainty in burnup reactivity due to the cross section error was found to decrease from 21% to 12% if the cross section ajustment method was employed. This brings the benefit of a reduction in control rod worth requirement by about 0.3%Δk. |
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ISSN: | 0022-3131 1881-1248 |
DOI: | 10.1080/18811248.1991.9731356 |