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Influence of corium composition on ex-vessel steam explosion

机译:皮质成分对船前蒸汽爆炸的影响

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The worst event that could happen in a nuclear power plant is a severe accident. If during such accident the corium melt comes into contact with the coolant water, a steam explosion may occur. At some stage of the accident progression, the primary system and the containment integrity of the nuclear power plant are jeopardized.In the article, the material influence of the oxide and metal corium on the ex-vessel steam explosion is investigated. The main purpose of the research work was a comparative analysis of different scenarios of steam explosion in the flooded reactor cavity. The purpose was to determine the influence of the material properties of the melt (comparison of oxide and metallic melt) and the oxidation of the metallic melt on the steam explosion strength. A PWR ex-vessel steam explosion study was carried out with the MC3D computer code. A premixing simulation and an explosion simulation were performed for each type of the corium. The explosion was triggered at the time of melt bottom contact. The global jet breakup model was used to simulate the premixing simulations.In the first part comparative calculations with oxide corium and oxide corium with prescribed thermal properties of metal corium are presented to find the isolated influence of thermal properties. The analysis of PWR ex-vessel steam explosion with oxide corium was already performed in the past (Leskovar and Ursic, 2014), but in this paper the comparative calculations with oxide corium and oxide corium with prescribed thermal properties of metal corium are presented for the first time. The purpose was to determine the differences in premixing and the steam explosion strength at simulations considering solely the different thermal properties of the oxide and metal corium.In the second part of the paper the influence of the metal corium oxidation on the ex-vessel steam explosion is presented. Due to the focusing effect the reactor vessel would most likely fail at the side and the outflow of metal corium would occur. First of all it was necessary to collect material properties of metal corium. The ex-vessel steam explosion was investigated and discussed by varying the metal corium oxidation rate. Additionally, based on experimental findings, the hydrogen film hypothesis for oxidation is presented. In this paper the calculations with properties of metal corium are presented for the first time. With the comparison of the simulation results the influence of the corium composition on the strength of the steam explosion is analysed. The simulation results revealed that with metal corium the strength of the steam explosion is in some cases higher than with oxide corium. (C) 2019 Elsevier Ltd. All rights reserved.
机译:核电厂可能发生的最严重事件是严重事故。如果在此类事故中,皮质熔液与冷却水接触,可能会发生蒸汽爆炸。在事故发展的某个阶段,核电厂的主要系统和安全壳完整性受到威胁。本文研究了氧化物和金属皮质对前蒸汽爆炸的物质影响。研究工作的主要目的是对淹没反应堆腔中蒸汽爆炸的不同场景进行比较分析。目的是确定熔体的材料性能(氧化物和金属熔体的比较)以及金属熔体的氧化对蒸汽爆炸强度的影响。使用MC3D计算机代码进行了压水堆前容器蒸汽爆炸研究。对每种类型的皮质醇进行了预混合模拟和爆炸模拟。在熔体底部接触时触发爆炸。在第一部分中,对氧化物皮质和具有规定金属皮质热性能的氧化物皮质进行了比较计算,以找出热属性的孤立影响。过去已经进行过压水堆用氧化物皮质的蒸汽爆破分析(Leskovar and Ursic,2014),但在本文中,对氧化物皮质和具有规定的金属皮质热性能的氧化物皮质进行了对比计算。第一次。目的是在模拟时仅考虑氧化物和金属皮质的不同热特性来确定预混合和蒸汽爆炸强度的差异。在本文的第二部分中,金属皮质氧化对容器外蒸汽爆炸的影响被表达。由于聚焦效应,反应堆容器很可能在侧面失效,并且会发生金属皮质的流出。首先,有必要收集金属皮质的材料特性。通过改变金属皮质的氧化速率,研究并讨论了船外蒸汽爆炸。另外,基于实验结果,提出了用于氧化的氢膜假说。本文首次提出了金属皮质性质的计算方法。通过模拟结果的比较,分析了皮质成分对蒸汽爆炸强度的影响。仿真结果表明,在使用金属皮质的情况下,蒸汽爆炸的强度在某些情况下要比在氧化物皮质中的更高。 (C)2019 Elsevier Ltd.保留所有权利。

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