Uncertainty quantification for severe-accident reactor modelling: Set-up and first results of the Horizon-2020 project MUSA

Author:

Brumm S.,Gabrielli F.,Sanchez-Espinoza V.,Stakhanova A.,Nudi M.,Groudev P.,Ou P.,Herranz L.E.

Publisher

Elsevier BV

Subject

Nuclear Energy and Engineering

Reference14 articles.

1. Uncertainty quantification for a severe accident sequence in a SFP in the frame of the H-2020 project MUSA: First outcomes;Coindreau;Ann. Nucl. Energy,2023

2. Fission product release in the first two PHEBUS tests FPT0 and FPT1;Dubourg;Nucl. Eng. Des.,2005

3. Electric Power Research Institute (EPRI), “Severe Accident Uncertainty Quantification and Analysis Using the Modular Accident Analysis Program (MAAP)”. Technical report 3002020762, Palo Alto, CA (2021). Accessed on https://www.epri.com/research/programs/061177/results/3002020762, on 30/11/2022.

4. State-Of-the-Art Reactor Consequence Analyses project: Uncertainty Analyses for Station Blackout Scenarios;Ghosh;Nucl. Technol.,2021

5. GRS Method for Uncertainty and Sensitivity Evaluation of Code Results and Applications;Glaeser;Sci. Technol. Nucl. Install.,2008

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