Comparison of calculation methods for lead cooled fast reactor reactivity effects

Author:

Böröczki Zoltán István,Aranyosy Ádám,Szieberth Máté

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference27 articles.

1. A. Alemberti, M. Frogheri and L. Mansani, The Lead Fast Reactor: Demonstrator ALFRED and ELFR Design, International Conference on Fast Reactors and Related Fuel Cycles, Paris, France 1 (2013) 233–247.

2. A collision history-based approach to sensitivity/perturbation calculations in the continuous energy Monte Carlo code SERPENT;Aufiero;Ann. Nucl. Energy,2015

3. M. Aufiero, M. Martin, M. Fratoni, E. Fridman, and S. Lorenzi, Analysis of the coolant density reactivity coefficient in LFRs and SFRs via Monte Carlo perturbation/sensitivity, in: Proceedings of The Physics of Reactors Conference, Sun Valley, Idaho, U.S., 2016, pp. 3493–3504.

4. Simulation of a research reactor reactivity transient with deterministic and GPU-assisted Monte Carlo reactor kinetics codes;Böröczki;The European Physical Journal Plus,2020

5. Lead Void Reactivity Worth in Two Critical Assembly Cores with Differing Uranium Enrichments;Fukushima;Nucl. Sci. Eng.,2018

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