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A MODEL FOR PREDICTION OF MAXIMUM POST-DRYOUT TEMPERATURE IN DECAY-HEATED DEBRIS BED

机译:衰变热碎石床中最大干燥后温度的预测模型

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Several designs of light water reactors consider melt fragmentation and cooling of corium debris bed in a deep pool as important part of their severe accident management strategies. Traditional approach to assessment of debris coolability is based on the bed dryout criterion. However, this is the most conservative criterion which doesn't take into account possibility of debris temperature stabilization in steam cooling regime. In this work numerical simulations of cooling of a decay heat-releasing porous debris bed in a water pool are carried out for the conditions where local dryout of porous material occurs. It is shown that the temperature of solid material in the dry zone can be stabilized if sufficient vapor flow is generated in the wetted part of the debris bed beneath the dry zone. A simple one-dimensional model which connects the maximum temperature and the relative size of the dry zone is proposed and verified against the numerical simulations with DECOSIM code for different shapes of the debris beds relevant to severe accident conditions in a Nordic type boiling water reactor (BWR). On the basis of this model, a criterion is obtained which defines the critical relative height of the dry zone corresponding to specific temperature of debris material which can be considered as a safety limit (e.g. start of zirconium oxidation, remelting of metallic debris or oxidic corium, etc.). The criterion allows one to evaluate the safety margins and degree of conservatism introduced by the dryout-based approach to assessment of debris coolability.
机译:轻水反应堆的几种设计都将熔池破碎和深水池中的珊瑚残渣床冷却视为其严重事故管理策略的重要组成部分。评估碎屑可冷却性的传统方法是基于床层干燥标准。但是,这是最保守的标准,没有考虑蒸汽冷却方式中碎屑温度稳定的可能性。在这项工作中,在发生多孔材料局部变干的条件下,对水池中的衰减热释放多孔碎片床进行冷却的数值模拟。结果表明,如果在干燥区下面的碎屑床的湿润部分中产生足够的蒸汽流,则干燥区中固体物料的温度可以稳定。提出了一个简单的一维模型,该模型将最高温度和干燥区的相对大小联系起来,并通过DECOSIM代码对与北欧式沸水反应堆中严重事故情况相关的不同形状的碎屑床的数值模拟进行了验证( BWR)。在此模型的基础上,获得了一个标准,该标准定义了与碎屑材料的特定温度相对应的干燥区的临界相对高度,可以将其视为安全极限(例如,锆的氧化开始,金属碎屑的重熔或氧化的皮质)。 , 等等。)。该标准允许人们评估基于干馏法评估碎屑可冷却性的安全裕度和保守程度。

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