Phénix is a French pool-type sodium-cooled prototype reactor; before the definitive shutdown, occurred in 2009, a final set of experimental tests are carried out in order to increase the knowledge on the operation and the safety aspect of the pool-type liquid metal-cooled reactors. One of the experiments was the Dissymmetric End-of-Life Test which was selected for the validation benchmark activity in the frame of SESAME project. The computer code validation plays a key role in the safety assessment of the innovative nuclear reactors and the Phénix dissymmetric test provides useful experimental data to verify the computer codes capability in the asymmetric thermal-hydraulic behaviour into a pool-type liquid metal-cooled reactor. This paper shows the comparison of the outcomes obtained with six different System Thermal-Hydraulic (STH) codes: RELAP5-3D©, SPECTRA, ATHLET, SAS4A/SASSYS-1, ASTEC-Na and CATHARE. The nodalization scheme of the reactor was individually achieved by the participants; during the development of the thermal-hydraulic model, the pool nodalization methodology had a special attention in order to investigate the capability of the STH codes to reproduce the dissymmetric effects which occur in each loop and into pools, caused by the azimuthal asymmetry of the boundary conditions. The modelling methodology of the participants is discussed and the main results are compared in this paper to obtain useful guide lines for the future modelling of innovative liquid metal pool-type reactors.

System thermal-hydraulic modelling of the phénix dissymmetric test benchmark / Narcisi, V.; Giannetti, F.; Del Nevo, A.; Alcaro, F.; Wang, X.; Kraus, A.; Brunett, A.; Thomas, J.; Girault, N.; Grosjean, B.; Caruso, G.; Gerschenfeld, A.. - In: NUCLEAR ENGINEERING AND DESIGN. - ISSN 0029-5493. - 353:(2019), pp. 1-16. [10.1016/j.nucengdes.2019.110272]

System thermal-hydraulic modelling of the phénix dissymmetric test benchmark

Narcisi V.;Giannetti F.
;
Caruso G.;
2019

Abstract

Phénix is a French pool-type sodium-cooled prototype reactor; before the definitive shutdown, occurred in 2009, a final set of experimental tests are carried out in order to increase the knowledge on the operation and the safety aspect of the pool-type liquid metal-cooled reactors. One of the experiments was the Dissymmetric End-of-Life Test which was selected for the validation benchmark activity in the frame of SESAME project. The computer code validation plays a key role in the safety assessment of the innovative nuclear reactors and the Phénix dissymmetric test provides useful experimental data to verify the computer codes capability in the asymmetric thermal-hydraulic behaviour into a pool-type liquid metal-cooled reactor. This paper shows the comparison of the outcomes obtained with six different System Thermal-Hydraulic (STH) codes: RELAP5-3D©, SPECTRA, ATHLET, SAS4A/SASSYS-1, ASTEC-Na and CATHARE. The nodalization scheme of the reactor was individually achieved by the participants; during the development of the thermal-hydraulic model, the pool nodalization methodology had a special attention in order to investigate the capability of the STH codes to reproduce the dissymmetric effects which occur in each loop and into pools, caused by the azimuthal asymmetry of the boundary conditions. The modelling methodology of the participants is discussed and the main results are compared in this paper to obtain useful guide lines for the future modelling of innovative liquid metal pool-type reactors.
2019
Phénix; system thermal-hydraulics; sodium cooled reactors; SESAME; dissymmetric test
01 Pubblicazione su rivista::01a Articolo in rivista
System thermal-hydraulic modelling of the phénix dissymmetric test benchmark / Narcisi, V.; Giannetti, F.; Del Nevo, A.; Alcaro, F.; Wang, X.; Kraus, A.; Brunett, A.; Thomas, J.; Girault, N.; Grosjean, B.; Caruso, G.; Gerschenfeld, A.. - In: NUCLEAR ENGINEERING AND DESIGN. - ISSN 0029-5493. - 353:(2019), pp. 1-16. [10.1016/j.nucengdes.2019.110272]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1309663
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