Modeling of Hydrodynamic Processes at a Large Leak of Water into Sodium in the Fast Reactor Coolant Circuit

In this paper, we describe a physicomathematical model of the processes that occur in a sodium circuit with a variable flow cross-section in the case of a water leak into sodium. The application area for this technique includes the possibility of analyzing consequences of this leak as applied to sod...

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Veröffentlicht in:Nuclear engineering and technology 2016, Vol.48 (5), p.1162-1173
Hauptverfasser: Perevoznikov, Sergey, Shvetsov, Yuriy, Kamayev, Aleksey, Pakhomov, Ilia, Borisov, Viacheslav, Pazin, Gennadiy, Mirzeabasov, Oleg, Korzun, Olga
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Sprache:kor
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Zusammenfassung:In this paper, we describe a physicomathematical model of the processes that occur in a sodium circuit with a variable flow cross-section in the case of a water leak into sodium. The application area for this technique includes the possibility of analyzing consequences of this leak as applied to sodium-water steam generators in fast neutron reactors. Hydrodynamic processes that occur in sodium circuits in the event of a water leak are described within the framework of a one-dimensional thermally nonequilibrium three-component gas-liquid flow model (sodium-hydrogen-sodium hydroxide). Consideration is given to the results of a mathematical modeling of experiments involving steam injection into the sodium loop of a circulation test facility. That was done by means of the computer code in which the proposed model had been implemented.
ISSN:1738-5733
2234-358X