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자료유형
학술저널
저자정보
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제48권 제4호
발행연도
2016.1
수록면
893 - 905 (13page)

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Numerous advanced reactor concepts have been proposed to replace light water reactorsever since their establishment as the dominant technology for nuclear energy production. While most designs seek to improve cost competitiveness and safety, the implausibility ofdoing so with affordable materials or existing nuclear fuel infrastructure reduces thepossibility of near-term deployment, especially in developing countries. The organic nuclearconcept, first explored in the 1950s, offers an attractive alternative to advancedreactor designs being considered. The advent of high temperature fluids, along with advancesin hydrocracking and reforming technologies driven by the oil and gas industries,make the organic concept even more viable today. We present a simple, cost-effective, andsafe small modular nuclear reactor for offshore underwater deployment. The core ismoderated by graphite, zirconium hydride, and organic fluid while cooled by the organicfluid. The organic coolant enables operation near atmospheric pressure and use of plaincarbon steel for the reactor tank and primary coolant piping system. The core is designedto mitigate the coolant degradation seen in early organic reactors. Overall, the designprovides a power density of 40 kW/L, while reducing the reactor hull size by 40% comparedwith a pressurized water reactor while significantly reducing capital plant costs.

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