Published 2012 | Version v1
Book

Application of the JENDL-4.0 nuclear data set for uncertainty analysis of the prototype FBR Monju

  • 1. Institut National des Sciences et Techniques Nucleaires, INSTN - Point Courrier No 35, Centre CEA de Saclay, F-91191 Gif-sur-Yvette Cedex (France)
  • 2. Research Inst. of Nuclear Engineering, Univ. of Fukui, Bunkyo 3-9-1, T910-8507 Fukui-ken, Fukui-shi (Japan)
  • 3. Japan Atomic Energy Agency, FBR Plant Engineering Center, Shiraki 1, 919-1279 Fukui-ken, Tsuruga-shi (Japan)

Description

This paper deals with uncertainty analysis of the Monju reactor using JENDL-4.0 and the ERANOS code 1. In 2010 the Japan Atomic Energy Agency - JAEA - released the JENDL-4.0 nuclear data set. This new evaluation contains improved values of cross-sections and emphasizes accurate covariance matrices. Also in 2010, JAEA restarted the sodium-cooled fast reactor prototype Monju after about 15 years of shutdown. The long shutdown time resulted in a build-up of 241Am by natural decay from the initially loaded Pu. As well as improved covariance matrices, JENDL-4.0 is announced to contain improved data for minor actinides 2. The choice of Monju reactor as an application of the new evaluation seems then even more relevant. The uncertainty analysis requires the determination of sensitivity coefficients. The well-established ERANOS code was chosen because of its integrated modules that allow users to perform sensitivity and uncertainty analysis. A JENDL-4.0 cross-sections library is not available for ERANOS. Therefor a cross-sections library had to be made from the original ENDF files for the ECCO cell code (part of ERANOS). For confirmation of the newly made library, calculations of a benchmark core were performed. These calculations used the MZA and MZB benchmarks and showed consistent results with other libraries. Calculations for the Monju reactor were performed using hexagonal 3D geometry and PN transport theory. However, the ERANOS sensitivity modules cannot use the resulting fluxes, as these modules require finite differences based fluxes, obtained from RZ SN-transport or 3D diffusion calculations. The corresponding geometrical models have been made and the results verified with Monju restart experimental data 4. Uncertainty analysis was performed using the RZ model. JENDL-4.0 uncertainty analysis showed a significant reduction of the uncertainty related to the fission cross-section of Pu along with an increase of the uncertainty related to the capture cross-section of 238U compared with the previous JENDL-3.3 version. Covariance data recently added in JENDL-4.0 for 241Am appears to have a non-negligible contribution. (authors)

Part of:
Proceedings of the 2012 International Congress on Advances in National Power Plants - ICAPP '12

Additional details

Publishing Information

Publisher
American Nuclear Society - ANS
Imprint Place
La Grange Park (United States)
ISBN
978-0-89448-091-1
Imprint Title
Proceedings of the 2012 International Congress on Advances in Nuclear Power Plants - ICAPP '12
Imprint Pagination
2799 p.
Journal Page Range
p. 1675-1684

Conference

Title
2012 International Congress on Advances in Nuclear Power Plants
Acronym
ICAPP '12
Dates
24-28 Jun 2012
Place
Chicago, IL (United States)

Optional Information

Notes
22 refs.