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首页> 外文期刊>Nuclear Technology >Validation and Application of the REKO-DIREKT Code for the Simulation of Passive Autocatalytic Recombiner Operational Behavior
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Validation and Application of the REKO-DIREKT Code for the Simulation of Passive Autocatalytic Recombiner Operational Behavior

机译:REKO-DIREKT代码在被动自催化重组器运行行为模拟中的验证和应用

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摘要

In order to reduce the accumulation of hydrogen and thus to mitigate the risk of combustion, many countries have installed passive autocatalytic recombiners (PARs) within light water reactor containments. The severe hydrogen combustion events of the recent Fukushima Daiichi accident are likely to incentivize an increased demand in upgrading nuclear power plants with PARs. Numerical simulation is an important tool for assessing PAR operation during a severe accident in terms of efficiency and proper installation. Advanced numerical PAR models are required for the challenging boundary conditions during a severe accident, for example, low oxygen amount, high steam amount, and presence of carbon monoxide. The REKO-DIREKT code has been developed in order to provide a PAR model capable of simulating complex PAR phenomena and at the same time being suitable for implementation in thermal-hydraulic codes. The development of REKO-DIREKT was supported by small-scale experiments performed at Forschungszentrum Juelich in the REKO facilities. These facilities allow the study of PAR-related single phenomena such as reaction kinetics under different conditions including variation of steam, oxygen, and carbon monoxide (REKO-3) and the chimney effect (REKO-4). Recently, the code has been validated against full-scale experiments performed in the Thermal-Hydraulics, Hydrogen, Aerosols, Iodine (THAI) facility at Eschborn, Germany, in the framework of the Organisation for Economic Co-operation and Development/ Nuclear Energy Agency THAI project. By this, the code has proven its applicability for different PAR designs and for a broad range of boundary conditions (pressure of up to 3 bars, steam amount up to 60 vol %, low-oxygen conditions). REKO-DIREKT has been successfully implemented in the commercial computational fluid dynamics code ANSYS-CFX as well as in the LP code COCOSYS [Gesellschaft fuer Anlagen- und Reaktorsicherheit (GRS), Germany].
机译:为了减少氢气的积累,从而减少燃烧的风险,许多国家在轻水反应堆安全壳内安装了被动自催化复合器(PAR)。最近的福岛第一核电站事故中发生的严重氢气燃烧事件可能会刺激人们对使用PAR升级核电站的需求增加。就效率和正确安装而言,数值模拟是评估严重事故期间PAR运行的重要工具。对于严重事故期间的挑战性边界条件(例如,低氧气量,高蒸汽量和一氧化碳的存在),需要高级数值PAR模型。开发REKO-DIREKT代码是为了提供一种PAR模型,该模型能够模拟复杂的PAR现象,同时适合于在热工液压代码中实施。 REKO-DIREKT的开发得到了REKO工厂在Forschungszentrum Juelich进行的小型实验的支持。这些设施允许研究PAR相关的单一现象,例如在不同条件下的反应动力学,包括蒸汽,氧气和一氧化碳的变化(REKO-3)和烟囱效应(REKO-4)。最近,该代码已在经济合作与发展组织/核能机构的框架内,针对在德国埃施博恩的热力水力,氢气,气溶胶,碘(THAI)设施中进行的全面实验进行了验证。泰国项目。这样,该规范已证明其适用于不同的PAR设计以及广泛的边界条件(压力高达3 bar,蒸汽量高达60 vol%,低氧条件)。 REKO-DIREKT已在商业计算流体动力学代码ANSYS-CFX和LP代码COCOSYS [德国,Gesellschaft fuer Anlagen- und Reaktorsicherheit(GRS)]中成功实现。

著录项

  • 来源
    《Nuclear Technology》 |2016年第2期|355-366|共12页
  • 作者单位

    Forschungszentrum Juelich, Institute of Energy and Climate Research (IEK-6), Juelich, Germany;

    Forschungszentrum Juelich, Institute of Energy and Climate Research (IEK-6), Juelich, Germany;

    Forschungszentrum Juelich, Institute of Energy and Climate Research (IEK-6), Juelich, Germany;

    RWTH Aachen University, Institute of Reactor Safety and Reactor Technology, Aachen, Germany;

    Forschungszentrum Juelich, Institute of Energy and Climate Research (IEK-6), Juelich, Germany,RWTH Aachen University, Institute of Reactor Safety and Reactor Technology, Aachen, 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
  • 中图分类
  • 关键词

    Passive autocatalytic recombiner; simulation; severe accident;

    机译:被动自催化重组器;模拟;严重事故;

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