A comparative study of Monte Carlo-coupled depletion codes applied to a Sodium Fast Reactor design loaded with minor actinides

Author:

Ochoa R.,Vázquez M.,Álvarez-Velarde F.,Martín-Fuertes F.,García-Herranz N.,Cuervo D.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference31 articles.

1. Álvarez-Velarde, F., León, P.T., González-Romero, E.M., 2007. EVOLCODE2, a combined neutronics and burn-up evolution simulation code. In: Proc. 9th Information Exchange Meeting on Actinide and Fission Product P&T (Nîmes, France). ISBN 978-92-64-99030-2, NEA/OECD.

2. Álvarez-Velarde, F., 2011. Development of a Computational Tool for the Simulation of Innovative Transmutation Systems. PhD thesis, University of Córdoba, Spain.

3. Álvarez-Velarde, F., González-Romero, E.M., 2012. Sensitivity/uncertainty analysis of the validation of the EVOLCODE 2.0 burn-up system with PWR experimental data. In: 12th IEM on Actinide and Fission Product Partitioning and Transmutation (12-IEMPT), NEA/OECD, Prague, Czech Republic, 24–27 September 2012.

4. An axially heterogeneous sodium-cooled fast reactor designed to transmute minor actinides;Bays;Nuclear Technology,2011

5. Buiron, L., Varaine, F., Lorenzo, D., Palancher, H., Valentin, B., 2007. Minor actinides transmutation in SFR depleted uranium radial blanket, neutronic and thermal hydraulic evaluation. In: Proceedings of Global 2007, Boise, Idaho, September 9–13.

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