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Application of hazard and operability analysis for safeguardability of a pyroprocessing facility

机译:危险性和可操作性分析在高温处理设施安全性中的应用

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摘要

Pyroprocessing treats nuclear fuel using electrochemical techniques for a variety of applications, whether to process used uranium oxide fuel for back-end management, or to reprocess used metallic fuel for an advanced fuel concept. Since there are proliferation risks associated with special nuclear material (SNM) processed in a pyroprocessing facility, the high reliability safeguards (HRS) methodology has been developed to implement safeguards, safety, and physical security (3S) together with operations from a design-driven perspective. This paper suggests the design strategies by integrating a hazard and operability (HAZOP) analysis. It is a process hazard analysis, essential for identifying hazards, operability issues, severe accident scenarios, and for mitigating consequences with the corresponding protection methods. It is a preliminary step for an eventual quantitative, probabilistic risk analysis, which may be needed for obtaining an operating license for a commercial pyroprocessing facility. The focus of this HAZOP analysis was on major pyroprocessing subsystems; voloxidation, electroreduction, electrorefining, electrowinning, and the argon atmosphere control system. Deviations were analyzed from normal operating conditions, and methods were thoroughly prepared to prohibit or mitigate off-normal situations. Importantly, pressure buildup or high temperature in the systems can increase the risk of initiating fire/explosion, which may eventually release radiation to the outside. Safety relief valve installations, valve actuation and heater automatic shutdown systems, etc., would be helpful to alleviate operational problems. This enhanced HAZOP also suggests a strong safeguards design for the facility by proposing nuclear material accounting (NMA) locations for the purpose of reducing potential proliferation risks.
机译:高温处理使用电化学技术处理核燃料,可用于多种应用,无论是处理用过的氧化铀燃料进行后端管理,还是将用过的金属燃料进行再处理以实现先进的燃料概念。由于在高温处理设施中处理特殊核材料(SNM)会带来扩散风险,因此已经开发出高可靠性保障(HRS)方法来实施保障,安全和物理安全(3S)以及设计驱动的操作透视。本文通过整合危害和可操作性(HAZOP)分析提出了设计策略。这是一个过程危害分析,对于识别危害,可操作性问题,严重事故场景以及使用相应的保护方法缓解后果至关重要。这是最终定量,概率风险分析的第一步,可能需要获得商业热解设施的经营许可证。 HAZOP分析的重点是主要的高温处理子系统。氧化,电还原,电精炼,电积和氩气气氛控制系统。分析了与正常操作条件的偏差,并彻底准备了禁止或缓解异常情况的方法。重要的是,系统中的压力累积或高温会增加引发火灾/爆炸的危险,这最终可能会将辐射释放到外部。安全释放阀的安装,阀门的致动和加热器的自动关闭系统等将有助于减轻操作问题。增强后的HAZOP还建议通过建议核材料核算(NMA)位置来为设施提供强有力的保障设计,以减少潜在的扩散风险。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2019年第7期|131-145|共15页
  • 作者单位

    Univ Idaho, Nucl Engn Program, 995 MK Simpson Blvd, Idaho Falls, ID 83401 USA;

    Univ Idaho, Nucl Engn Program, 995 MK Simpson Blvd, Idaho Falls, ID 83401 USA;

    Univ Idaho, Nucl Engn Program, 995 MK Simpson Blvd, Idaho Falls, ID 83401 USA;

  • 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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