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LBLOCA INITIATED EMERGENCY CONDITION ANALYSIS FOR A CHINA THREE-LOOP PWR

机译:中国三回路压水堆的LBLOCA紧急状态分析

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Great interest in severe accident has been motivated since Fukushima accident, which indicates that the probability of severe accident exists even though it is extremely small. Emergency condition is important in decision making in case of severe accident in NPP. Although many studies have been conducted for severe accident, there was necessary to investigate emergency condition of severe accidents that could possibly happen and haven't been sufficiently analyzed. Since station blackout (SBO) happened in Fukushima accident, a number of studies in severe accidents initiated by SBO have been carried out. Off-site power is assumed to be lost during large break loss of coolant accident (LBLOCA), but there is few study to find out emergency condition during LBLOCA if both of off-site and on-site power are lost. A hypothetical severe accident initiated by LBLOCA along with SBO in a China three-loop PWR was simulated in the paper using MELCOR code. Emergency condition was obtained including start of core uncover, start of zirconium-water reaction, failure of fuel cladding and failure of the lower head. Thermal-hydraulic response of the core during the accident was also analyzed in the paper. The model for this study consists of 46 control volumes (27 in primary loop, 17 in secondary loop, 1 in containment and 1 in environment) and 52 flow paths. High pressure safety injection (HPSI) and low pressure safety injection (LPSI) are lost because of loss of on-site and off-site power, and simultaneously main feed water and auxiliary feed water of the steam generators are lost for the same reason. The accumulator can inject water into the core since it is passive and doesn't need any power. Results of the study will be useful in gaining an insight into detailed severe accident emergency condition that could happen in a China three-loop PWR and may provide basis for severe accident mitigation.
机译:自福岛事故以来,人们对严重事故的兴趣日益浓厚,这表明即使发生极小事故,也存在严重事故的可能性。核电厂发生严重事故时,紧急情况对于决策至关重要。尽管已针对严重事故进行了许多研究,但有必要调查可能发生且尚未进行充分分析的严重事故的紧急情况。自从福岛事故发生车站停电以来,已经开展了许多由SBO引发的严重事故研究。假设在冷却剂意外大损失(LBLOCA)期间会损失现场电源,但是,如果现场和现场电源都丢失,则很少有研究能够找出LBLOCA期间的紧急情况。本文使用MELCOR代码模拟了LBLOCA和SBO在中国三环压水堆中引发的假设性严重事故。获得了紧急情况,包括开始发现岩心,开始锆水反应,燃料包层失效和下缸盖失效。本文还分析了事故期间岩心的热工水力响应。本研究的模型包括46个控制体积(主回路27个,次级回路17个,安全壳1个,环境1个)和52个流路。由于现场和非现场功率的损失,高压安全喷射(HPSI)和低压安全喷射(LPSI)丢失,并且蒸汽发生器的主给水和辅助给水同时由于相同的原因而丢失。蓄能器可以将水注入岩心,因为它是无源的并且不需要任何动力。研究结果将有助于深入了解中国三环路压水堆可能发生的详细严重事故紧急情况,并可能为减轻严重事故提供依据。

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