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STUDY ON HYDROGEN RISK OF SPENT FUEL COMPARTMENT INDUCED BY CONTAINMENT VENTING

机译:容器排气引起的燃油室氢危险性研究

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Hydrogen risk in the spent fuel compartment becomes a matter of concern after the Fukushima accident. However, researches are mainly focused on the hydrogen generated by spent fuels due to lack of cooling. As a severe accident management strategy, one of the containment venting paths is to vent the containment through the normal residual heat removal system (RNS) to the spent fuel compartment, which will cause hydrogen build up in it. Therefore, the hydrogen risk induced by containment venting for the spent fuel compartment is studied for advanced passive PWR in this paper. The spent fuel pool compartment model is built and analyzed with integral accident analysis code couple with the containment analysis. Hydrogen risk in the spent fuel pool compartment is evaluated combining with containment venting. Since the containment venting is mainly implemented in two different strategies, containment depressurization and control hydrogen flammability, these two strategies are analyzed in this paper to evaluated the hydrogen risk in the spent fuel compartment. Result shows that there will not be significate hydrogen built up with the hydrogen control system available in the containment. However, if the hydrogen control system is not available, venting into the spent fuel pool compartment will cause a certain level of hydrogen risk there. Besides, suggestions are made for containment venting strategy considering hydrogen risk in spent fuel pool compartment.
机译:福岛事故发生后,乏燃料室内的氢气风险成为一个值得关注的问题。然而,由于缺乏冷却,研究主要集中在乏燃料产生的氢气上。作为严重的事故管理策略,安全壳通风路径之一是将安全壳通过正常的残留热量去除系统(RNS)排放到乏燃料室,这将导致氢在其中积聚。因此,本文针对先进的被动式压水堆研究了乏燃料舱安全壳排气所引起的氢气风险。建立了乏燃料池舱模型,并使用整体事故分析代码和安全壳分析进行了分析。对乏燃料池舱中的氢气风险进行评估,并结合安全壳排气装置。由于安全壳排气主要通过两种不同的策略实施,即安全壳减压和控制氢气的可燃性,因此本文对这两种策略进行了分析,以评估乏燃料室中的氢气风险。结果表明,安全壳中没有可用的氢气控制系统,不会积聚大量氢气。但是,如果没有氢气控制系统,则进入乏燃料池隔室的排气会在该处造成一定程度的氢气风险。此外,还针对考虑乏燃料池隔室中氢气风险的安全壳排气策略提出了建议。

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