Nuclear data-induced uncertainty quantification of neutronics parameters of accelerator-driven system

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Abstract

Nuclear data-induced uncertainties of neutronics parameters of one accelerator-driven system concept designed by the Japan Atomic Energy Agency are quantified. The variance-covariance data provided in the JENDL-4.0 library are used. Uncertainties are quantified for effective neutron multiplication factor, subcritical neutron multiplication rate, a family of delayed neutron fractions, power peaking and coolant void reactivity at several operational states. Inter-cycle and inter-parameter correlation matrices and detailed information such as nuclide-wise and nuclear data-wise uncertainties are also provided.

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Chiba, G., Pyeon, C. H., van Rooijen, W., & Endo, T. (2016). Nuclear data-induced uncertainty quantification of neutronics parameters of accelerator-driven system. Journal of Nuclear Science and Technology, 53(10), 1653–1661. https://doi.org/10.1080/00223131.2015.1127185

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