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Analysis of the hydrogen behaviour in compartments of the Ignalina nuclear power plant

机译:伊格纳利纳核电站隔室中的氢行为分析

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The Accident Localisation System (ALS) of the Ignalina nuclear power plant is a "pressure suppression" type confinement, which protects the population, employees and environment from radiation hazards. According to the emergency operating procedures for the Ignalina nuclear power plant ~110 m~3 of hydrogen is released to the ALS compartments during the maximum design basis accident. However, in case of beyond design basis accidents, when the oxidation of zirconium starts, the amount of generated hydrogen could be significantly higher. The volume concentration of hydrogen in the compartment might reach 4% of a combustible mixture. To prevent a possible hydrogen accumulation in the ALS of the Ignalina nuclear power plant during an accident, the H_2 control system is installed. The analysis performed resulted in the identification of places of possible H_2 accumulation in the ALS compartments during transient processes and the assessment of the mixture combustibility in these places for a postulated accident scenario. The results also allow to evaluate the influence of the proposed severe accident management strategy on the ALS conditions.
机译:伊格纳利纳核电站的事故定位系统(ALS)是一种“压力抑制”型限制装置,可保护居民,员工和环境免受辐射危害。根据伊格纳利纳核电站的紧急运行程序,在最大设计基准事故期间,氢会向ALS舱室释放110 m〜3的氢气。但是,如果发生超出设计基准的事故,则锆开始氧化时,氢气的生成量可能会大大增加。隔室中氢气的体积浓度可能达到可燃混合物的4%。为了防止在事故期间伊格纳利纳核电站的ALS中可能存在氢气积聚,安装了H_2控制系统。进行的分析结果确定了瞬态过程中ALS隔室中H_2可能聚集的位置,并针对假定的事故场景评估了这些位置中的混合物可燃性。结果还可以评估拟议的严重事故管理策略对ALS条件的影响。

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