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국내 원자력발전소의 주제어실 화재피난 리스크 평가를 위한 화재 시뮬레이션
강대일 ( Dae Il Kang ),김길유 ( Kilyoo Kim ),장승철 ( Seung Cheol Jang ),유성연 ( Seong Yeon Yoo ) 한국안전학회(구 한국산업안전학회) 2014 한국안전학회지 Vol.29 No.4
In this paper, to systematically assess the abandonment risk of main control room (MCR) fire, fire simulations with FireDynamics Simulator were performed and abandonment probabilities were estimated for the MCR bench-board fire of domestic referencenuclear power plant. The fire simulation scenarios performed in this study included propagating and non-propagating fires of the MCRbench-board, and the availability and unavailability of heating, ventilation, and air conditioning system (HVACS). The following resultswere obtained. First, temperature was the major abandonment impact factor for the MCR bench-board fire if the HVACS was availableand optical density was that if the HVACS was unavailable. Second, the fire scenario contributing the MCR bench-board fireabandonment risk was identified to be only the propagating fire. Third, it was confirmed that the abandonment probability of the MCRbench-board fire for domestic reference nuclear power plant could be reduced by using the fire modeling.
원자력발전소의 화재사건 확률론적안전성평가 모델 구축에 관한 연구
강대일 ( Dae Il Kang ),김길유 ( Kilyoo Kim ) 한국안전학회(구 한국산업안전학회) 2016 한국안전학회지 Vol.31 No.5
A single fire event within a fire area can cause multiple initiating events considered in internal events probabilistic safety assessment (PSA). For an example, a fire event in turbine building fire area can cause a loss of the main feed-water and loss of off-site power initiating events. This fire initiating event could result in special plant responses beyond the scope of the internal events PSA model. One approach to address a fire initiating event is to develop a specific fire event tree. However, the development of a specific fire event tree is difficult since the number of fire event trees may be several hundreds or more. Thus, internal fire events PSA model has been generally constructed by modifications of the pre-developed internal events PSA model. New accident sequence logics not covered in the internal events PSA model are separately developed to incorporate them into the fire PSA model. Recently, many fire PSA models have fire induced initiating event fault trees not shown in an internal event PSA model. Up to now, there has been no analytical comparative study on the constructions of fire events PSA model using internal events PSA model with and without fault trees of initiating events. In this study, the changing process of internal events PSA model to fire events PSA model is analytically presented and discussed.