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Evaluation of the PAR Mitigation System in Swiss PWR Containment Using the GOTHIC Code

机译:使用GOTHIC代码评估瑞士PWR密闭区的PAR缓解系统

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摘要

The installation of passive autocatalytic recombiners (PARs) in the containment of operating nuclear power plants (NPPs) is increasingly based on three-dimensional studies of severe accidents that accurately predict the hydrogen pathways and local accumulation regions in containment and examine the mitigation effects of the PARs on the hydrogen risk. The GOTHIC (Generation Of Thermal-Hydraulic Information for Containments) code is applied in this paper to study the effectiveness of the PARs installed in the Gosgen NPP in Switzerland. A fast release of a mixture of hydrogen and steam from the hot leg during a total station blackout is chosen as the limiting scenario. The PAR modeling approach is qualified simulating two experiments performed in the frame of the OECD/NEA (Organisation for Economic Co-operation and Development/Nuclear Energy Agency) THAI (Thermal-hydraulics, Hydrogen, Aerosols and Iodine) project.The results of the plant analyses show that the recombiners cannot prevent the formation of a stratified cloud of hydrogen (10% molar concentration), but they can mitigate the hydrogen accumulation once formed. In the case of the analyzed fast release scenario, which is characterized by increasing loads with large initial flow rate and high hydrogen concentration values, it is shown that, when a large number of recombiners are installed, the global outcome in relation to the combustion risk does not depend on the details of the single PAR behavior. The hydrogen ignition risk can be fully mitigated in a timeframe ranging from 15 to 30 min after the fast release, according to the dependence of the PAR efficiency model on the adopted parameters.
机译:越来越多地基于对严重事故的三维研究来准确地预测安全壳中的氢途径和局部积聚区域,并研究其缓解效应,这是在对正在运行的核电厂(NPPs)的安全壳中安装被动自催化重组器(PAR)的越来越多的研究。氢气风险的PARs。本文使用GOTHIC(用于容器的热工水力信息的生成)代码来研究瑞士Gosgen NPP中安装的PAR的有效性。在全站停电期间从热段快速释放氢气和蒸汽的混合物作为限制方案。 PAR建模方法是合格的,可以模拟在OECD / NEA(经济合作与发展组织/核能机构)THAI(热液,氢,气溶胶和碘)项目中进行的两个实验。植物分析表明,重组子无法防止形成分层的氢云(摩尔浓度为10%),但是一旦形成,它们就可以减轻氢的积累。在分析的快速释放场景中,其特征是初始流量大且氢浓度值高时负载增加,表明当安装大量重组器时,与燃烧风险有关的整体结果不依赖于单个PAR行为的详细信息。根据PAR效率模型对所采用参数的依赖关系,在快速释放后的15到30分钟内,可以完全缓解氢气着火风险。

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  • 来源
    《Nuclear Technology》 |2019年第2期|153-173|共21页
  • 作者单位

    PSI, Nucl Energy & Safety Res Dept, CH-5232 Villigen, Switzerland;

    PSI, Nucl Energy & Safety Res Dept, CH-5232 Villigen, Switzerland;

    Kernkraftwerk Gosgen Daniken AG KKG, Safety Dept, Kraftwerkstr, CH-4658 Daniken, Switzerland;

    PSI, Nucl Energy & Safety Res Dept, CH-5232 Villigen, Switzerland|Swiss Fed Inst Technol, Swiss Fed Inst Technol, Lab Nucl Energy Syst, Sonneggstr 3, CH-8092 Zurich, Switzerland;

    Kernkraftwerk Gosgen Daniken AG KKG, Safety Dept, Kraftwerkstr, CH-4658 Daniken, Switzerland;

    PSI, Nucl Energy & Safety Res Dept, CH-5232 Villigen, Switzerland|Swiss Fed Inst Technol, Swiss Fed Inst Technol, Lab Nucl Energy Syst, Sonneggstr 3, CH-8092 Zurich, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydrogen mitigation; fast release; severe accident; plant analysis; Thermal-hydraulics; Hydrogen; Aerosols and Iodine facility;

    机译:减氢;快速释放;严重事故;工厂分析;热工液压;氢;气溶胶和碘设施;
  • 入库时间 2022-08-18 04:14:00

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