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Volume 42 Issue 4
Aug.  2021
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Wang Xicheng, Wang Dingqu, Jiang Yueyuan, Li Songyang. Simplified Modelling Method for Spacer Grid of NHR200-II Fuel Assembly[J]. Nuclear Power Engineering, 2021, 42(4): 105-111. doi: 10.13832/j.jnpe.2021.04.0105
Citation: Wang Xicheng, Wang Dingqu, Jiang Yueyuan, Li Songyang. Simplified Modelling Method for Spacer Grid of NHR200-II Fuel Assembly[J]. Nuclear Power Engineering, 2021, 42(4): 105-111. doi: 10.13832/j.jnpe.2021.04.0105

Simplified Modelling Method for Spacer Grid of NHR200-II Fuel Assembly

doi: 10.13832/j.jnpe.2021.04.0105
  • Received Date: 2020-05-26
  • Rev Recd Date: 2021-01-22
  • Publish Date: 2021-08-15
  • A simplified modelling method for the spacer grid of NHR200-II fuel assembly is proposed to increase the computational efficiency in the dynamic analysis. It includes the replacement of the grid inside the dimples and three-arc springs with the non-linear connectors, and the replacement of the fuel rods with beam elements. The stiffness of connectors was derived from previous experiments of NHR200-II spacer grid. Natural frequency analysis and impact simulation were performed by a 1×2 sub-model of the fuel assembly to verify this method. Then, this simplified method was applied to a full-scale 9×9 spacer grid model, to study the effects of the grid clamping ability on its dynamic characteristics. The results suggest that this simplified approach can give a reasonable response when induced by a seismic load at different clamping levels. In conclusion, from the modelling point of view, the proposed simplified method for NHR200-II spacer grid is effective.

     

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  • [1]
    余红星,李文杰,柴晓明,等. 数字反应堆发展与挑战[J]. 核动力工程,2020, 41(4): 1-6.
    [2]
    YOON K H, KIM J Y, KIM H K. Axial impact analysis of a 16 by 16 fuel assembly by the FE method[C]. Toronto, Canada: SMiRT19, 2007.
    [3]
    JIANG H, WANG J J. Spent nuclear fuel system dynamic stability under normal conditions of transportation[J]. Nuclear Engineering and Design, 2016(310): 1-14.
    [4]
    Dassault公司. Abaqus 6.14 用户手册[Z]. 2014.
    [5]
    林乐. 冲击载荷下低温供热堆燃料组件的动力学响应分析[D]. 北京: 清华大学核研院, 2007.
    [6]
    古成龙,杨钰莹,郭严. PWR堆芯燃料组件非线性梁模型研究[J]. 核动力工程,2020, 41(5): 65-69.
    [7]
    申腾. NHR200-Ⅱ燃料组件定位格架力学性能分析与实验研究[D]. 北京: 清华大学核研院, 2013.
    [8]
    吴先洋,蒋跃元,王鼎渠,等. NHR-200定位格架整体承载能力试验研究[J]. 核科学与工程,2015, 35(3): 424-433. doi: 10.3969/j.issn.0258-0918.2015.03.005
    [9]
    WANG X C, WANG D Q, DENG Q L, et al. Simulation of dynamic characteristics of NHR200-II fuel assembly[J]. Nuclear Engineering and Design, 2021(379): 111255.
    [10]
    YOO Y I, KIM K H, EOM K B, et al. Finite element analysis of the mechanical behavior of a nuclear fuel assembly spacer grid[J]. Nuclear Engineering and Design, 2019(352): 110179.
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