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자료유형
학술저널
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저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제48권 제6호
발행연도
2016.1
수록면
1,338 - 1,348 (11page)

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A novel fully passive small modular superheated water reactor (SWR) for underwaterdeployment is designed to produce 160 MWe with steam at 500ºC to increase the thermodynamicefficiency compared with standard light water reactors. The SWR design isbased on a conceptual 400-MWe integral SWR using the internally and externally cooledannular fuel (IXAF). The coolant boils in the external channels throughout the core toapproximately the same quality as a conventional boiling water reactor and then thesteam, instead of exiting the reactor pressure vessel, turns around and flows downward inthe central channel of some IXAF fuel rods within each assembly and then flows upwardthrough the rest of the IXAF pins in the assembly and exits the reactor pressure vessel assuperheated steam. In this study, new cladding material to withstand high temperaturesteam in addition to the fuel mechanical and safety behavior is investigated. The steamtemperature was found to depend on the thermal and mechanical characteristics of thefuel. The SWR showed a very different transient behavior compared with a boiling waterreactor. The inter-play between the inner and outer channels of the IXAF was mainlybeneficial except in the case of sudden reactivity insertion transients where additionalcontrol consideration is required.

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