Robust technique using magnetohydrodynamics for safety improvement in sodium-cooled fast reactor

Among Generation IV reactors, the sodium-cooled fast reactor (SFR) is attracting attention as a system having great potential for commercial use. Gas entrainment is a thermal-hydraulic issue related to the safety problem of the reactor core in the SFR. Typically, a dipped plate or baffles are instal...

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Veröffentlicht in:Nuclear engineering and technology 2022, 54(2), , pp.565-578
Hauptverfasser: Lee, Jong Hui, Park, Il Seouk
Format: Artikel
Sprache:eng
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Zusammenfassung:Among Generation IV reactors, the sodium-cooled fast reactor (SFR) is attracting attention as a system having great potential for commercial use. Gas entrainment is a thermal-hydraulic issue related to the safety problem of the reactor core in the SFR. Typically, a dipped plate or baffles are installed under the free surface to suppress gas entrainment. However, these approaches can cause gas entrainment in other locations and require many trial-and-error and verifications. In this study, a new strategy using magnetohydrodynamics to suppress gas entrainment in the SFR is proposed. In a counter-flow model, a judgment criterion of gas entrainment occurrence was developed for both water and liquid metal. Moreover, the gas entrainment can be completely suppressed by applying a magnetic field.
ISSN:1738-5733
2234-358X
DOI:10.1016/j.net.2021.08.025