THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR
Molten salt reactors as liquid-fuelled reactors are flexible in terms of operation or design choices, but they are very different in terms of design, operation and safety approach compared to solid-fuelled reactors. Such reactors call for a new definition of their operating procedures and safety app...
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doaj-c43a59b0efb74dacbc492b3c0c3fd2cd2021-08-02T23:21:01ZengEDP SciencesEPJ Web of Conferences2100-014X2021-01-012470603010.1051/epjconf/202124706030epjconf_physor2020_06030THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTORLaureau A.0Rosier E.1Merle E.2Beils S.3Bruneau O.4Blanchon J.C.5Gathmann R.6Heuer D.7Passelaigue F.Vaiana F.8Zanini A.Laboratory for Reactor Physics and Systems behaviour (LRS) Ecole Polytechnique Fédérale de Lausanne (EPFL)Framatome 10 rue Juliette RécamierLPSC-IN2P3-CNRS / Université Grenoble Alpes / Grenoble INP LPSC 53 rue des MartyrsFramatome 10 rue Juliette RécamierCORYS 44 rue des BergesCORYS 44 rue des BergesCORYS 44 rue des BergesLPSC-IN2P3-CNRS / Université Grenoble Alpes / Grenoble INP LPSC 53 rue des MartyrsFramatome 10 rue Juliette RécamierMolten salt reactors as liquid-fuelled reactors are flexible in terms of operation or design choices, but they are very different in terms of design, operation and safety approach compared to solid-fuelled reactors. Such reactors call for a new definition of their operating procedures and safety approach. Dedicated developments and studies have been performed in the frame of the European SAMOFAR project of Horizon2020 and in parallel in France involving CNRS, CORYS and Framatome to develop a system code called LiCore adapted to such reactors, corresponding to a basic-principle power plant simulator. The neutronic model LiCore, at the centre of the simulator, corresponds to an improved point-kinetics model to take into account the specificities of a MSR, notably the circulation of the delayed neutron precursors out of the core. Coupled to a simple piston model for the fuel motion in the core, this code can perform calculations faster than real time to simulate the behaviour of the fuel circuit. Transient calculations performed with LiCore are presented, together with comparisons first to a simple point-kinetics model and then to 3D calculations with the TFM-OpenFOAM coupled code. Finally, the LiCore code has recently been integrated in the ALICES platform, the integrated simulation toolset designed by CORYS for the development, maintenance and operation of major simulator such as power plant simulators.https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_06030.pdfmolten salt reactorspower plant simulatorreal time transient calculations |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Laureau A. Rosier E. Merle E. Beils S. Bruneau O. Blanchon J.C. Gathmann R. Heuer D. Passelaigue F. Vaiana F. Zanini A. |
spellingShingle |
Laureau A. Rosier E. Merle E. Beils S. Bruneau O. Blanchon J.C. Gathmann R. Heuer D. Passelaigue F. Vaiana F. Zanini A. THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR EPJ Web of Conferences molten salt reactors power plant simulator real time transient calculations |
author_facet |
Laureau A. Rosier E. Merle E. Beils S. Bruneau O. Blanchon J.C. Gathmann R. Heuer D. Passelaigue F. Vaiana F. Zanini A. |
author_sort |
Laureau A. |
title |
THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR |
title_short |
THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR |
title_full |
THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR |
title_fullStr |
THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR |
title_full_unstemmed |
THE LiCore POWER PLANT SIMULATOR OF THE MOLTEN SALT FAST REACTOR |
title_sort |
licore power plant simulator of the molten salt fast reactor |
publisher |
EDP Sciences |
series |
EPJ Web of Conferences |
issn |
2100-014X |
publishDate |
2021-01-01 |
description |
Molten salt reactors as liquid-fuelled reactors are flexible in terms of operation or design choices, but they are very different in terms of design, operation and safety approach compared to solid-fuelled reactors. Such reactors call for a new definition of their operating procedures and safety approach. Dedicated developments and studies have been performed in the frame of the European SAMOFAR project of Horizon2020 and in parallel in France involving CNRS, CORYS and Framatome to develop a system code called LiCore adapted to such reactors, corresponding to a basic-principle power plant simulator. The neutronic model LiCore, at the centre of the simulator, corresponds to an improved point-kinetics model to take into account the specificities of a MSR, notably the circulation of the delayed neutron precursors out of the core. Coupled to a simple piston model for the fuel motion in the core, this code can perform calculations faster than real time to simulate the behaviour of the fuel circuit. Transient calculations performed with LiCore are presented, together with comparisons first to a simple point-kinetics model and then to 3D calculations with the TFM-OpenFOAM coupled code. Finally, the LiCore code has recently been integrated in the ALICES platform, the integrated simulation toolset designed by CORYS for the development, maintenance and operation of major simulator such as power plant simulators. |
topic |
molten salt reactors power plant simulator real time transient calculations |
url |
https://www.epj-conferences.org/articles/epjconf/pdf/2021/01/epjconf_physor2020_06030.pdf |
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