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Passive auto-catalytic recombiners operation in the presence of hydrogen and carbon monoxide: Experimental study and model development

机译:氢和一氧化碳存在下的被动自动催化重组器操作:实验研究和模型开发

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摘要

In a LWR severe accident, carbon monoxide (CO) may be generated inside the containment due to molten corium concrete interaction (MCCI). As a component of the accident atmosphere, CO will interact with passive auto-catalytic recombiners (PARs) which are installed inside LWR containments for hydrogen (H_2) removal. Depending on the boundary conditions, CO may either react with oxygen to carbon dioxide (CO_2) or act as catalyst poison, reducing the catalyst activity and hence the hydrogen conversion efficiency. A new experimental test programme performed in co-operation between JULICH and RWTH investigates these aspects aiming at providing data for model development for advanced severe accident analyses. In the first test series presented here, the parallel catalytic reaction of H_2 and CO on the catalyst surface has been studied, i.e. the hydrogen recombination reaction was started before CO was injected. In total, 33 steady state measurements have been performed. The test series was jointly evaluated by JULICH, RWTH and IRSN. The test results show that under the given conditions the conversion of CO into CO_2 has no negative impact on the parallel hydrogen conversion. The efficiency of the CO recombination in terms of molar rates is significantly smaller (by a factor of ~2) than the corresponding H_2 conversion efficiency. Due to the exothermal reaction, the parallel CO conversion may also have an impact on the possible ignition of the flammable gases at hot PAR surfaces. The authors have used three different numerical codes for the simulation of the parallel CO/H_2 recombination. The codes REKO-DIREKT(JUELICH/RWTH), SPARK (IRSN), and CFX (ANSYS) were able to capture the effects observed in the experiments, providing a versatile basis for further investigations in this important safety issue. The different model approaches and additional enhancements in order to simulate the CO test series are described in the paper.
机译:在轻水堆严重事故中,由于熔融的水泥混凝土相互作用(MCCI),可能在安全壳内生成一氧化碳(CO)。作为事故气氛的一部分,CO将与安装在轻水堆安全壳内的被动式自动催化重组器(PAR)相互作用,以去除氢气(H_2)。取决于边界条件,CO可能与氧气反应生成二氧化碳(CO_2)或充当催化剂毒物,从而降低了催化剂活性,从而降低了氢转化效率。 JULICH和RWTH之间合作执行的新实验测试程序研究了这些方面,旨在为高级严重事故分析的模型开发提供数据。在此处提出的第一个测试系列中,已经研究了H_2和CO在催化剂表面的平行催化反应,即在注入CO之前开始了氢重组反应。总共进行了33次稳态测量。该测试系列由JULICH,RWTH和IRSN共同评估。测试结果表明,在给定条件下,CO转化为CO_2对平行氢转化率没有负面影响。以摩尔比计,CO重组效率比相应的H_2转化效率小得多(约2倍)。由于放热反应,平行的CO转化也可能对PAR较热表面上的可燃气体起火产生影响。作者已经使用了三种不同的数字代码来模拟并行的CO / H_2重组。代码REKO-DIREKT(JUELICH / RWTH),SPARK(IRSN)和CFX(ANSYS)能够捕获在实验中观察到的效果,为对该重要安全问题的进一步研究提供了通用基础。本文介绍了用于模拟CO测试序列的不同模型方法和其他增强功能。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2014年第1期|137-147|共11页
  • 作者单位

    RWTH Aachen University, Institute for Reactor Safety and Reactor Technology, 52072 Aachen, Germany;

    Forschungszentrum Juelich GmbH, Institute of Energy and Climate Research - Nuclear Waste Management and Reactor Safety (IEK-6), 52425 Juelich, Germany;

    Forschungszentrum Juelich GmbH, Institute of Energy and Climate Research - Nuclear Waste Management and Reactor Safety (IEK-6), 52425 Juelich, Germany;

    Institut de Radioprotection et de Surete Nucleaire (IRSN), PSN-RES/SAG/BPhAG, BP 17 92262 Fontenay aux Roses, France;

    Institut de Radioprotection et de Surete Nucleaire (IRSN), PSN-RES/SAG/BPhAG, BP 17 92262 Fontenay aux Roses, France;

    RWTH Aachen University, Institute for Reactor Safety and Reactor Technology, 52072 Aachen, Germany,Forschungszentrum Juelich GmbH, Institute of Energy and Climate Research - Nuclear Waste Management and Reactor Safety (IEK-6), 52425 Juelich, Germany;

  • 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
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