Uncertainty assessment on the calculated decay heat of the ASTRID basic design core based on the DARWIN-2.3 package

Author:

Lebrat Jean-François,Vallet Vanessa,Coquelet-Pascal Christine,Venard Christophe,Eschbach Romain

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference38 articles.

1. Akiyama, M., An, S., 1982. Proceedings of the International Conference on Nuclear Data for Science and Technology, Antwerp, Belgium, September 6-10, 1982, pp. 237.

2. Reactor decay heat in 239Pu: solving the γ discrepancy in the 4–3000-s cooling period;Algora;Phys. Rev. Lett.,2010

3. Archier, P., De Saint Jean, C., Noguère, G., Litaize, O., Leconte, P., Bouret, C., 2014. COMAC: Nuclear Data Covariance Matrices Library for Reactor Applications, PHYSOR 2014 - Kyoto, Japan, 2014 https://inis.iaea.org/search/search.aspx?orig_q=RN:47042532.

4. Benoit, J.C., 2012. Développement d’un code de propagation des incertitudes des données nucléaires sur la puissance résiduelle dans les réacteurs à neutrons rapides, PhD Thesis, université Paris Sud, 2012. https://tel.archives-ouvertes.fr/tel-01064275/document.

5. Benoit et al., J.C., 2012. Decay Heat of Sodium Fast Reactor: Comparison of Experimental Measurements on the PHENIX reactor with Calculations performed with the French DARWIN package PHYSOR 2012 Knoxville, Tennessee, USA, April 15-20, 2012. https://inis.iaea.org/search/search.aspx?orig_q=RN:44063643

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