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자료유형
학술저널
저자정보
저널정보
한국원자력학회 Nuclear Engineering and Technology Nuclear Engineering and Technology 제47권 제4호
발행연도
2015.1
수록면
461 - 471 (11page)

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Recently, the estimation of the social cost of energy sources has been emphasized asvarious novel energy options become feasible in addition to conventional ones. In particular,the social cost of introducing measures to protect power-distribution systems frompower-source instability and the cost of accident-risk response for various power sourcesmust be investigated. To account for these risk factors, an integrated societal riskassessment framework, based on power-uncertainty analysis and accident-consequenceanalysis, is proposed. In this study, we applied the proposed framework to nuclearpower plants, solar photovoltaic systems, and wind-turbine generators. The required capacityof gas-turbine power plants to be used as backup power facilities to compensate forfluctuations in the power output from the main power source was estimated based on theperformance indicators of each power source. The average individual health risk perterawatt-hours (TWh) of electricity produced by each power source was quantitativelyestimated by assessing accident frequency and the consequences of specific accidentscenarios based on the probabilistic risk assessment methodology. This study is expectedto provide insight into integrated societal risk analysis, and can be used to estimate thesocial cost of various power sources.

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