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Simulation of hydrogen deflagration and detonation in a BWR reactor building

机译:BWR反应堆建筑中氢气渗透与爆轰的仿真

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A systematic study was carried out to investigate the hydrogen behaviour in a BWR reactor building during a severe accident. BWR core contains a large amount of Zircaloy and the containment is relatively small. Because containment leakage cannot be totally excluded, hydrogen can build up in the reactor building, where the atmosphere is normal air. The objective of the work was to investigate, whether hydrogen can form flammable and detonable mixtures in the reactor building, evaluate the possibility of onset of detonation and assess the pressure loads under detonation conditions. The safety concern is, whether the hydrogen in the reactor building can detonate and whether the external detonation can jeopardize the containment integrity. The analysis indicated that the possibility of flame acceleration and deflagration-to-detonation transition (DDT) in the reactor building could not be ruled out in case of a 20 mm~2 leakage from the containment. The detonation analyses indicated that maximum pressure spike of about 7 MPa was observed in the reactor building room selected for the analysis.
机译:进行了系统研究,以在严重事故中研究BWR反应堆建筑中的氢行为。 BWR核心含有大量的锆瓦尔,容器相对较小。由于遏制泄漏不能完全排除,所以氢气可以在反应堆建筑中积聚,大气是正常的空气。该工作的目的是探讨,氢气是否可以在反应器建筑物中形成易燃和可偏离的混合物,评估爆炸发作的可能性,并评估爆轰条件下的压力载荷。安全问题是,反应堆建筑物中的氢是否可以引爆以及外部爆炸是否可以危及遏制完整性。该分析表明,在遏制20mm〜2的情况下,不能排除反应器建筑物中火焰加速度和偏转 - 爆炸转变(DDT)的可能性。爆轰分析表明,在选择分析的反应器建筑室中观察到约7MPa的最大压力峰值。

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