Wednesday, March 27, 2013

1303.6563 (Erwin Alhassan et al.)

Combining Total Monte Carlo and Benchmarks for nuclear data uncertainty
propagation on an LFRs safety parameters
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Erwin Alhassan, Henrik Sjöstrand, Junfeng Duan, Cecilia Gustavsson, Arjan Koning, Stephan Pomp, Dimitri Rochman, Michael Österlund
Analyses are carried out to assess the impact of nuclear data uncertainties on keff for the European Lead Cooled Training Reactor (ELECTRA) using the Total Monte Carlo method. A large number of Pu-239 random ENDF-formated libraries generated using the TALYS based system were processed into ACE format with NJOY99.336 code and used as input into the Serpent Monte Carlo neutron transport code to obtain distribution in keff. The keff distribution obtained was compared with the latest major nuclear data libraries - JEFF-3.1.2, ENDF/B-VII.1 and JENDL-4.0. A method is proposed for the selection of benchmarks for specific applications using the Total Monte Carlo approach. Finally, an accept/reject criterion was investigated based on chi square values obtained using the Pu-239 Jezebel criticality benchmark. It was observed that nuclear data uncertainties in keff were reduced considerably from 748 to 443 pcm by applying a more rigid acceptance criteria for accepting random files.
View original: http://arxiv.org/abs/1303.6563

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