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Dynamic analytical and experimental research of shock absorber to safeguard the nuclear fuel assemblies

机译:减震器保护核燃料组件的动态分析和实验研究

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摘要

The Ignalina Nuclear Power Plant (NPP) has two RBMK-1500 graphite moderated boiling water multichannel reactors. The Ignalina NPP Unit 1 was shut down at the end of 2004 while Unit 2 has been in operation for over 5 years. After shutdown at the Unit 1 remained spent fuel assemblies with low burn-up depth. In order to reuse these assemblies in the reactor of Unit 2 a special set of equipment was developed. One of the most important items of this set is a container, which is used for the transportation of spent fuel assemblies between the reactors of Unit 1 and Unit 2. A special shock absorber was designed to avoid failure of fuel assemblies in case of hypothetical spent fuel assemblies drop accident during uploading/unloading of spent fuel assemblies to/from container. This shock absorber was examined using scaled experiments and finite element analysis. Static and dynamic investigations of the shock absorber were performed for the estimation and optimization of its geometrical parameters. The objective of this work is the estimation whether the proposed design of shock absorber can fulfil the stopping function of the spent fuel assemblies and is capable to withstand the dynamics load. Experimental testing of scaled shock absorber models and dynamic analytical investigations using the finite element code ABAQUS/Explicit were performed. The simulation model was verified by comparing the experimental and simulation results and it was concluded that the shock absorber is capable to withstand the dynamic load, i.e. successful force suppression function in case of accident.
机译:伊格纳利纳核电站(NPP)有两个RBMK-1500石墨慢化沸腾水多通道反应堆。伊格纳利纳核电厂1号机组于2004年底关闭,而2号机组已经运行了5年以上。 1号机组停机后,剩余的乏燃料组件燃尽深度低。为了在单元2的反应堆中重复使用这些组件,开发了一套特殊的设备。该组中最重要的项目之一是一个容器,用于在1号机组和2号机组的反应堆之间运输乏燃料组件。专门设计的减震器可以避免假想的燃料组件出现故障。燃料组件在将乏燃料组件上载到容器或从容器中卸下时掉落事故。使用比例实验和有限元分析检查了这种减震器。对减震器进行了静态和动态研究,以估计和优化其几何参数。这项工作的目的是估计所提出的减震器设计是否能够满足乏燃料组件的停止功能并能够承受动力负荷。进行了比例减震器模型的实验测试,并使用了有限元代码ABAQUS / Explicit进行了动态分析研究。通过比较实验和仿真结果验证了该仿真模型,得出的结论是该减震器能够承受动态载荷,即在发生事故时具有成功的力抑制功能。

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  • 来源
    《Nuclear Engineering and Design》 |2013年第7期|155-164|共10页
  • 作者单位

    Laboratory of Nuclear Installation Safety, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

    Laboratory of Materials Research and Testing, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

    Laboratory of Nuclear Installation Safety, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

    Laboratory of Materials Research and Testing, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

    Laboratory of Nuclear Installation Safety, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

    Laboratory of Nuclear Installation Safety, Lithuanian Energy Institute, Breslaujos str. 3, LT-44403 Kaunas, Lithuania;

  • 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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