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Development of system design and seismic performance evaluation for reactor pool working platform of a research reactor

机译:研究堆反应堆池工作平台的系统设计和抗震性能评估开发

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摘要

The reactor pool working platform (RPWP) has been newly designed for an open-tank-in-pool type research reactor, and its seismic response, structural integrity, serviceability, and seismic margin have been evaluated during and after seismic events in this paper. The main important concept of the RPWP is to minimize the pool top radiation level by physically covering the reactor pool of the open-tank-in-pool type research reactor and suppressing the rise of flow induced by the primary cooling system. It is also to provide easy handling of the irradiated objects under the pool water by providing guide tubes and refueling cover to make the radioisotopes irradiated and protect the reactor structure assembly. For this concept, the new three dimensional design model of the RPWP is established for manufacturing, installation and operation, and the analytical model is developed to analyze the seismic performance. Since it is submerged under and influenced by water, the hydrodynamic effect is taken into account by using the hydrodynamic added mass method. To investigate the dynamic characteristics of the RPWP, a modal analysis of the developed analytical model is performed. To evaluate the structural integrity and serviceability of the RPWP, the response spectrum analysis and response time history analysis have been performed under the static load and the seismic load of a safe shutdown earthquake (SSE). Their stresses are analyzed for the structural integrity. The possibility of an impact between the RPWP and the most adjacent structure is investigated for the serviceability. The analysis results show that the maximum stress values of the base frame, guide tubes and refueling cover of the RPWP under the seismic event are within the specified code limits. It is confirmed that an impact does not take place under a seismic event. Also, the seismic margin of the RPWP is studied, and the seismic limit to sustain the structural integrity and serviceability is attained based on the deterministic and probability methods. Lastly, the hydrodynamic effect on the seismic performance of the RPWP is quantitatively investigated and from the result, an objective basis of the consideration of the hydrodynamic influence is acquired. Therefore, it is concluded that the newly devised RPWP is safely designed in that no damage to the structural integrity and serviceability, and a sufficient seismic margin is expected.
机译:反应堆池工作平台(RPWP)是为开池式研究型堆设计的,它是在地震事件发生期间和之后进行评估的,其地震响应,结构完整性,可维护性和地震裕度都得到了评估。 RPWP的主要重要概念是通过物理覆盖开池式研究型反应堆的反应堆并抑制一次冷却系统引起的流量上升来最大程度地降低池顶辐射水平。通过提供导管和加油盖以使放射性同位素被辐照并保护反应堆结构组件,还可以提供对池水下被辐照物体的简单处理。为此,建立了RPWP的新的三维设计模型以进行制造,安装和运行,并开发了分析模型来分析抗震性能。由于它浸入水中并受水影响,因此使用水力附加质量法考虑水力效应。为了研究RPWP的动态特性,对开发的分析模型进行了模态分析。为了评估RPWP的结构完整性和可服务性,在安全停车地震(SSE)的静载荷和地震载荷下进行了响应谱分析和响应时程分析。分析其应力的结构完整性。对于可维护性,研究了RPWP和最邻近的结构之间发生碰撞的可能性。分析结果表明,地震事件下RPWP的底架,导管和加油盖的最大应力值均在规定的极限范围内。确认在地震事件下不会发生冲击。此外,研究了RPWP的地震余量,并基于确定性和概率方法得出了维持结构完整性和可使用性的地震极限。最后,定量研究了水动力对RPWP抗震性能的影响,并从中获得了考虑水动力影响的客观依据。因此,可以得出结论,新设计的RPWP是安全设计的,不会损坏结构完整性和可维护性,并且可以预期有足够的地震余量。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2014年第1期|199-213|共15页
  • 作者单位

    Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea,North Carolina State University, Raleigh, NC 27695, USA;

    Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

    Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

    Korea Atomic Energy Research Institute, Daejeon 305-353, Republic of Korea;

  • 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
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